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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Sergey Obukhov; Ahmed Ibrahim; Ahmed A. Zaki Diab; Ameena Saad Al-Sumaiti; +1 Authors

    Una de las tareas importantes para aumentar la eficiencia del sistema fotovoltaico (PV) es el desarrollo y la mejora de los algoritmos de seguimiento del punto de máxima potencia (MPPT). Estos algoritmos MPPT conducen a la capacidad de capturar de manera eficiente el punto de máxima potencia global de la matriz fotovoltaica parcialmente sombreada. Uno de estos rastreadores es el algoritmo de optimización de enjambre de partículas (PSO), que es una de las técnicas de computación blanda. Los rastreadores convencionales basados en PSO tienen muchas ventajas, como la simplicidad de la implementación de hardware y la independencia del sistema instalado. El problema real de la aplicación práctica del PSO es la determinación de sus parámetros para garantizar una alta efectividad de la extracción del MPP global. El análisis de los trabajos científicos dedicados al algoritmo PSO ha demostrado que actualmente no existe una metodología para la selección de los parámetros óptimos de los seguidores de máxima potencia basados en el algoritmo PSO para el sistema fotovoltaico. Este trabajo tiene como objetivo crear un método conveniente y razonable para elegir los parámetros óptimos del algoritmo PSO, teniendo en cuenta la topología y los parámetros del convertidor DC-DC y la configuración de los paneles solares. Se ha presentado un nuevo método para seleccionar los parámetros de un convertidor reductor conectado a una batería. El valor óptimo del tiempo de muestreo para los controladores digitales MPP, proporcionando su máximo rendimiento; se ha determinado en base a una nueva metodología. El paquete de software Matlab/Simulink se utiliza como la principal herramienta de investigación. Los resultados destacados identifican que el PSO modificado y sus parámetros diseñados cumplen mejor con los requisitos del controlador MPPT para el sistema fotovoltaico. L'une des tâches importantes pour augmenter l'efficacité du système photovoltaïque (PV) est le développement et l'amélioration des algorithmes de suivi du point de puissance maximale (MPPT). Ces algorithmes MPPT permettent de capturer efficacement le point de puissance maximale global du réseau photovoltaïque partiellement ombré. L'un de ces trackers est l'algorithme d'optimisation d'essaim de particules (PSO) qui est l'une des techniques de calcul logiciel. Les trackers conventionnels basés sur PSO présentent de nombreux avantages tels que la simplicité de mise en œuvre du matériel et l'indépendance par rapport au système installé. Le véritable problème de l'application pratique de PSO est la détermination de ses paramètres pour assurer une grande efficacité d'extraction du MPP mondial. L'analyse des articles scientifiques consacrés à l'algorithme PSO a montré qu'il n'existe actuellement aucune méthodologie pour la sélection des paramètres optimaux des suiveurs de puissance maximale basés sur l'algorithme PSO pour le système PV. Cet article vise à créer une méthode pratique et raisonnable pour choisir les paramètres optimaux de l'algorithme PSO, en tenant compte de la topologie et des paramètres du convertisseur DC-DC et de la configuration des panneaux solaires. Une nouvelle méthode de sélection des paramètres d'un convertisseur abaisseur de tension connecté à une batterie a été présentée. La valeur optimale du temps d'échantillonnage pour les contrôleurs MPP numériques, fournissant leurs performances maximales ; a été déterminée sur la base d'une nouvelle méthodologie. Le progiciel Matlab/Simulink est utilisé comme principal outil de recherche. Les principaux résultats identifient que le PSO modifié et ses paramètres conçus répondent le mieux aux exigences du contrôleur MPPT pour le système PV. One of the important tasks for increasing the efficiency of photovoltaic (PV) system is the development and improvement of the maximum power point tracking algorithms (MPPT). These MPPT algorithms lead to the ability to catch efficiently the global maximum power point of the partially shaded PV array. One of these trackers is the particle swarm optimization (PSO) algorithm which is one of the Soft computing techniques. The conventional PSO based trackers have many advantages such as the simplicity of hardware implementation and independence from the installed system. The actual problem of the practical application of PSO is the determination of its parameters to ensure high effectiveness of extracting the global MPP. Analysis of scientific papers devoted to the PSO algorithm has shown that there is currently no methodology for the optimal parameters' selection of PSO algorithm based maximum power trackers for the PV system. This paper aims to create a convenient and reasonable method for choosing the optimal parameters of the PSO algorithm, taking into account the topology and parameters of the DC-DC converter and the configuration of solar panels. A new method for selecting the parameters of a buck converter connected to a battery has been presented. The optimal value of the sampling time for the digital MPP controllers, providing their maximum performance; has been determined based on a new methodology. Matlab/Simulink software package is used as the main research tool. The prominent outcomes identify that the modified PSO and its designed parameters best meet the requirements of the MPPT controller for the PV system. تتمثل إحدى المهام المهمة لزيادة كفاءة النظام الكهروضوئي (PV) في تطوير وتحسين خوارزميات تتبع نقطة الطاقة القصوى (MPPT). تؤدي خوارزميات MPPT هذه إلى القدرة على التقاط نقطة الطاقة القصوى العالمية للمصفوفة الكهروضوئية المظللة جزئيًا بكفاءة. أحد أجهزة التتبع هذه هي خوارزمية تحسين سرب الجسيمات (PSO) التي تعد واحدة من تقنيات الحوسبة اللينة. تتمتع أجهزة التتبع التقليدية التي تعتمد على PSO بالعديد من المزايا مثل بساطة تنفيذ الأجهزة والاستقلال عن النظام المثبت. تتمثل المشكلة الفعلية للتطبيق العملي لـ PSO في تحديد معاييره لضمان فعالية عالية لاستخراج MPP العالمي. أظهر تحليل الأوراق العلمية المخصصة لخوارزمية PSO أنه لا توجد حاليًا منهجية لاختيار المعلمات المثلى لأجهزة تتبع الطاقة القصوى القائمة على خوارزمية PSO للنظام الكهروضوئي. تهدف هذه الورقة إلى إنشاء طريقة مريحة ومعقولة لاختيار المعلمات المثلى لخوارزمية PSO، مع مراعاة طوبولوجيا ومعلمات محول DC - DC وتكوين الألواح الشمسية. تم تقديم طريقة جديدة لاختيار معلمات محول باك المتصل بالبطارية. تم تحديد القيمة المثلى لوقت أخذ العينات لوحدات تحكم MPP الرقمية، مما يوفر أقصى أداء لها ؛ بناءً على منهجية جديدة. تُستخدم حزمة برامج Matlab/Simulink كأداة بحث رئيسية. تحدد النتائج البارزة أن PSO المعدل ومعلماته المصممة تلبي على أفضل وجه متطلبات وحدة تحكم MPPT للنظام الكهروضوئي.

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    IEEE Access
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    https://dx.doi.org/10.60692/m2...
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: G. AAD; E. ABAT; B. ABBOTT; J. ABDALLAH; +196 Authors

    The ATLAS Inner Detector is a composite tracking system consisting of silicon pixels, silicon strips and straw tubes in a 2 T magnetic field. Its installation was completed in August 2008 and the detector took part in data- taking with single LHC beams and cosmic rays. The initial detector operation, hardware commissioning and in-situ calibrations are described. Tracking performance has been measured with 7.6 million cosmic-ray events, collected using a tracking trigger and reconstructed with modular pattern-recognition and fitting software. The intrinsic hit efficiency and tracking trigger efficiencies are close to 100%. Lorentz angle measurements for both electrons and holes, specific energy-loss calibration and transition radiation turn-on measurements have been performed. Different alignment techniques have been used to reconstruct the detector geometry. After the initial alignment, a transverse impact parameter resolution of 22.1+/-0.9 ��m and a relative momentum resolution ��p/p = (4.83+/-0.16) \times 10-4 GeV-1 \times pT have been measured for high momentum tracks. 34 pages, 25 figures

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    European Physical Journal C: Particles and Fields
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    DIGITAL.CSIC
    Article . 2025
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    Radboud Repository
    Article . 2010
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    DSpace@Dogus
    Article . 2010
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    CERN Document Server
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    https://doi.org/10.1007/978-3-...
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    https://dx.doi.org/10.48550/ar...
    Article . 2010
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    Authors: Anggoro Cahyo Fitrianto; Kunio Yoshikawa; Arif Darmawan; Koji Tokimatsu;

    Abstract Empty fruit bunch, as one product from oil palm and one of renewable energy that has the potential to replace fossil fuel in the future. Remote sensing offers the better alternative for oil palm age measurement over the conventional approach to solving the problem in the lack of information in the spatial distribution of empty fruit bunch resources. Forest Canopy Density model was employed to estimate the age of oil palm trees that used to count the amount of empty fruit bunch production in the research area. Time series remote sensing data analysis was performed to detailing the class of stands age. Based on oil palm trees age, empty fruit bunch production was estimated with the result Cikasungka area has the biggest potential production with 1.98 KT/year following by Cimulang with 1.75 KT/year and Candali with 1.72 KT/year.

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    Energy Procedia
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    Energy Procedia
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      Energy Procedia
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    After the Fukushima accident caused by the Great East Japan Earthquake, nuclear transmutation acquired much interest as an effective option of nuclear waste management. The Japan Atomic Energy Agency (JAEA) proposes the transmutation of minor actinides by an accelerator-driven system (ADS) using lead–bismuth eutectic alloy (Pb-Bi) as a spallation target and a coolant of the subcritical core. The current ADS design has 800 MWth of rated power, which is driven by a 20 MW proton LINAC, to transmute minor actinides generated from 10 units of standard light water reactors.

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    https://link.springer.com/cont...
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    Progress in Nuclear Energy
    Article . 2015 . Peer-reviewed
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    https://doi.org/10.1007/978-4-...
    Part of book or chapter of book . 2014 . Peer-reviewed
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      Progress in Nuclear Energy
      Article . 2015 . Peer-reviewed
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      https://doi.org/10.1007/978-4-...
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    Authors: K. Watanabe; Yoshikuni Shinohara; Koji Hayashi;

    Abstract The problem of detecting in-sodium water leaks in the steam generator of liquid metal fast breeder reactor has been studied by applying the Twice-Squaring method, originally developed for acoustic detection of sodium boiling. Through the performance tests using test data synthesized by mixing experimental leak noise with background noise from real steam generators, it was concluded that the present method can detect the leak noise with signal-to-noise ratio down to −20 dB.

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    Annals of Nuclear Energy
    Article . 1996 . Peer-reviewed
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      Annals of Nuclear Energy
      Article . 1996 . Peer-reviewed
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    Authors: Salwan Tajjour; Shyam Singh Chandel; Hasmat Malik; Majed A. Alotaibi; +1 Authors

    Solar photovoltaic (PV) panel parameter estimation is vital to manage solar-based microgrid operations, for which several techniques have been developed. Solar cell modeling using metaheuristic algorithms is found to be one of the accurate techniques. However, it requires experimental datasets, which may not be available for most of the industrial modules. Therefore, this study proposed a new model to estimate the solar parameters for two types of PV panels using manufacturer datasheets only. In addition, two optimization techniques called particle swarm optimization (PSO) and genetic algorithm (GA) were also investigated for solving this problem. The predicted results showed that GA is more accurate than PSO, but PSO is faster. The new model was tested under different solar radiation conditions and found to be accurate under all conditions, with an error which varied between 7.6212 × 10−4 under standard testing conditions and 0.0032 at 200 W/m2 solar radiation. Further comparison of the proposed method with other methods in the literature showed its capability to compete with other models despite not using experimental datasets. The study is of significance for the sustainable energy management of newly established commercial PV micro grids.

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    Photonics
    Article . 2022 . Peer-reviewed
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    Photonics
    Article . 2022
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      Photonics
      Article . 2022 . Peer-reviewed
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  • Authors: T. Mitani; T. Satoh; Y. Mishima; Koichi Nara;

    This paper proposes a new solution algorithm for security constrained unit commitment (SCUC) based on Lagrangian decomposition and tabu search. In partially deregulated power system, a power company encounters such problems as power flow congestions caused by unexpected power wheeling from PPSs (Power Producer & Suppliers) and as to achieve social welfare by optimally operating own generators. These problems can be solved easily through SCUC. In this paper, tabu search application to SCUC problem is proposed. It must be noted that the concept of hypothetical generator is introduced to get a computationally feasible solution. To solve the problem, the original problem can be divided into two sub-problems through Lagrangian decomposition: the unit commitment (UC) problem of each generator for the whole time horizon and the optimal operation problem of each time zone. This paper focuses on tabu search applied to solve the UC problem combined with Lagrangian decomposition. A numerical example is shown to demonstrate the algorithm.

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    Authors: Yasuaki Hijioka; Glenn R. McGregor; Saneyuki Takano; Yasushi Honda; +7 Authors

    We previously developed a model for projection of heat-related mortality attributable to climate change. The objective of this paper is to improve the fit and precision of and examine the robustness of the model.We obtained daily data for number of deaths and maximum temperature from respective governmental organizations of Japan, Korea, Taiwan, the USA, and European countries. For future projection, we used the Bergen climate model 2 (BCM2) general circulation model, the Special Report on Emissions Scenarios (SRES) A1B socioeconomic scenario, and the mortality projection for the 65+-year-old age group developed by the World Health Organization (WHO). The heat-related excess mortality was defined as follows: The temperature-mortality relation forms a V-shaped curve, and the temperature at which mortality becomes lowest is called the optimum temperature (OT). The difference in mortality between the OT and a temperature beyond the OT is the excess mortality. To develop the model for projection, we used Japanese 47-prefecture data from 1972 to 2008. Using a distributed lag nonlinear model (two-dimensional nonparametric regression of temperature and its lag effect), we included the lag effect of temperature up to 15 days, and created a risk function curve on which the projection is based. As an example, we perform a future projection using the above-mentioned risk function. In the projection, we used 1961-1990 temperature as the baseline, and temperatures in the 2030s and 2050s were projected using the BCM2 global circulation model, SRES A1B scenario, and WHO-provided annual mortality. Here, we used the "counterfactual method" to evaluate the climate change impact; For example, baseline temperature and 2030 mortality were used to determine the baseline excess, and compared with the 2030 excess, for which we used 2030 temperature and 2030 mortality. In terms of adaptation to warmer climate, we assumed 0 % adaptation when the OT as of the current climate is used and 100 % adaptation when the OT as of the future climate is used. The midpoint of the OTs of the two types of adaptation was set to be the OT for 50 % adaptation.We calculated heat-related excess mortality for 2030 and 2050.Our new model is considered to be better fit, and more precise and robust compared with the previous model.

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    Environmental Health and Preventive Medicine
    Article . 2013 . Peer-reviewed
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      Environmental Health and Preventive Medicine
      Article . 2013 . Peer-reviewed
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    Authors: Keiichiro Hashimoto; Tomonao Saito; Shi-Ying Lin;

    Abstract To protect the environment changing, coal combustion must reduce its CO 2 emission by capture and storage. Chemical looping is a potentially high technology for coal combustion with CO 2 capture efficiently. A chemical-looping-combustion system, using circulating fluidized bed witch consist two main reactors, a fuel reactor and an air reactor. An oxygen carrier, typically a metal oxide, is employed to transfer oxygen from the air reactor to the fuel reactor, and circulates between these two reactors. During 2012-2014, JCOAL, MHPS (Mitsubishi Hitachi Power Systems (2012-2013 Babcock-Hitachi)) and IAE(The Institute of Applied Energy) have a project funded by NEDO (New Energy and Industrial Technology Development Organization) to surveyed chemical looping technology development in the world, studied market needs of chemical looping combustion, investigated carrier costs and reactivity, etc., in order to reduce CO 2 separation recovery cost to 2,500 yen/ton of CO 2 or less. A small-scale reactor was used to study the behaviors of the direct reaction of coal with an oxygen carrier. It was found that the coal conversion efficiency increases with increasing iron level in the carrier, that the volume of unreacted CO gas increases when oxygen use in the carrier exceeds the range of Fe 2 O 3 --> Fe 3 O 4 , and that there is no notable surface melting that could obstruct particle circulation at 950C or less. A basic model of the CLC process was produced using the AspenPlus software and used to analyze the process under the conditions of a 250MWth plant. It found that the volume of circulating CLC carrier is roughly the same as the circulation of CFBC medium, and that inner desulfurization and ultra-low NO X combustion are possible. Using the results of research and process analysis, a three-tower chemical looping coal combustion technology that consists primarily of an air reactor (AR), coal reactor (CR), and volatiles reactor (VR) was selected, and an conceptual design was produced for the reactor configuration and technical parameters.

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    Energy Procedia
    Article . 2017 . Peer-reviewed
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    Energy Procedia
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      Energy Procedia
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      Energy Procedia
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    Authors: Herrero Martin, Rebeca; Antón Hernández, Ignacio; Sala Pano, Gabriel; De Nardis, Davide; +2 Authors

    A model to evaluate the performance of high concentrator photovoltaics (HCPV) modules (that generates current-voltage curves) has been applied together with a Monte Carlo approach to obtain a distribution of modules with a given set of characteristics (e.g., receivers electrical properties and misalignments within elementary units in modules) related to a manufacturing scenario. In this paper, the performance of CPV systems (tracker and inverter) that contain the set of simulated modules is evaluated depending on different system characteristics: inverter configuration, sorting of modules and bending of the tracker frame. Thus, the study of the HCPV technology regarding its angular constrains is fully covered by analyzing all the possible elements affecting the generated electrical power.

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    Recolector de Ciencia Abierta, RECOLECTA
    Article . 2017 . Peer-reviewed
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    Archivo Digital UPM
    Article . 2017
    License: CC BY NC ND
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      Recolector de Ciencia Abierta, RECOLECTA
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Sergey Obukhov; Ahmed Ibrahim; Ahmed A. Zaki Diab; Ameena Saad Al-Sumaiti; +1 Authors

    Una de las tareas importantes para aumentar la eficiencia del sistema fotovoltaico (PV) es el desarrollo y la mejora de los algoritmos de seguimiento del punto de máxima potencia (MPPT). Estos algoritmos MPPT conducen a la capacidad de capturar de manera eficiente el punto de máxima potencia global de la matriz fotovoltaica parcialmente sombreada. Uno de estos rastreadores es el algoritmo de optimización de enjambre de partículas (PSO), que es una de las técnicas de computación blanda. Los rastreadores convencionales basados en PSO tienen muchas ventajas, como la simplicidad de la implementación de hardware y la independencia del sistema instalado. El problema real de la aplicación práctica del PSO es la determinación de sus parámetros para garantizar una alta efectividad de la extracción del MPP global. El análisis de los trabajos científicos dedicados al algoritmo PSO ha demostrado que actualmente no existe una metodología para la selección de los parámetros óptimos de los seguidores de máxima potencia basados en el algoritmo PSO para el sistema fotovoltaico. Este trabajo tiene como objetivo crear un método conveniente y razonable para elegir los parámetros óptimos del algoritmo PSO, teniendo en cuenta la topología y los parámetros del convertidor DC-DC y la configuración de los paneles solares. Se ha presentado un nuevo método para seleccionar los parámetros de un convertidor reductor conectado a una batería. El valor óptimo del tiempo de muestreo para los controladores digitales MPP, proporcionando su máximo rendimiento; se ha determinado en base a una nueva metodología. El paquete de software Matlab/Simulink se utiliza como la principal herramienta de investigación. Los resultados destacados identifican que el PSO modificado y sus parámetros diseñados cumplen mejor con los requisitos del controlador MPPT para el sistema fotovoltaico. L'une des tâches importantes pour augmenter l'efficacité du système photovoltaïque (PV) est le développement et l'amélioration des algorithmes de suivi du point de puissance maximale (MPPT). Ces algorithmes MPPT permettent de capturer efficacement le point de puissance maximale global du réseau photovoltaïque partiellement ombré. L'un de ces trackers est l'algorithme d'optimisation d'essaim de particules (PSO) qui est l'une des techniques de calcul logiciel. Les trackers conventionnels basés sur PSO présentent de nombreux avantages tels que la simplicité de mise en œuvre du matériel et l'indépendance par rapport au système installé. Le véritable problème de l'application pratique de PSO est la détermination de ses paramètres pour assurer une grande efficacité d'extraction du MPP mondial. L'analyse des articles scientifiques consacrés à l'algorithme PSO a montré qu'il n'existe actuellement aucune méthodologie pour la sélection des paramètres optimaux des suiveurs de puissance maximale basés sur l'algorithme PSO pour le système PV. Cet article vise à créer une méthode pratique et raisonnable pour choisir les paramètres optimaux de l'algorithme PSO, en tenant compte de la topologie et des paramètres du convertisseur DC-DC et de la configuration des panneaux solaires. Une nouvelle méthode de sélection des paramètres d'un convertisseur abaisseur de tension connecté à une batterie a été présentée. La valeur optimale du temps d'échantillonnage pour les contrôleurs MPP numériques, fournissant leurs performances maximales ; a été déterminée sur la base d'une nouvelle méthodologie. Le progiciel Matlab/Simulink est utilisé comme principal outil de recherche. Les principaux résultats identifient que le PSO modifié et ses paramètres conçus répondent le mieux aux exigences du contrôleur MPPT pour le système PV. One of the important tasks for increasing the efficiency of photovoltaic (PV) system is the development and improvement of the maximum power point tracking algorithms (MPPT). These MPPT algorithms lead to the ability to catch efficiently the global maximum power point of the partially shaded PV array. One of these trackers is the particle swarm optimization (PSO) algorithm which is one of the Soft computing techniques. The conventional PSO based trackers have many advantages such as the simplicity of hardware implementation and independence from the installed system. The actual problem of the practical application of PSO is the determination of its parameters to ensure high effectiveness of extracting the global MPP. Analysis of scientific papers devoted to the PSO algorithm has shown that there is currently no methodology for the optimal parameters' selection of PSO algorithm based maximum power trackers for the PV system. This paper aims to create a convenient and reasonable method for choosing the optimal parameters of the PSO algorithm, taking into account the topology and parameters of the DC-DC converter and the configuration of solar panels. A new method for selecting the parameters of a buck converter connected to a battery has been presented. The optimal value of the sampling time for the digital MPP controllers, providing their maximum performance; has been determined based on a new methodology. Matlab/Simulink software package is used as the main research tool. The prominent outcomes identify that the modified PSO and its designed parameters best meet the requirements of the MPPT controller for the PV system. تتمثل إحدى المهام المهمة لزيادة كفاءة النظام الكهروضوئي (PV) في تطوير وتحسين خوارزميات تتبع نقطة الطاقة القصوى (MPPT). تؤدي خوارزميات MPPT هذه إلى القدرة على التقاط نقطة الطاقة القصوى العالمية للمصفوفة الكهروضوئية المظللة جزئيًا بكفاءة. أحد أجهزة التتبع هذه هي خوارزمية تحسين سرب الجسيمات (PSO) التي تعد واحدة من تقنيات الحوسبة اللينة. تتمتع أجهزة التتبع التقليدية التي تعتمد على PSO بالعديد من المزايا مثل بساطة تنفيذ الأجهزة والاستقلال عن النظام المثبت. تتمثل المشكلة الفعلية للتطبيق العملي لـ PSO في تحديد معاييره لضمان فعالية عالية لاستخراج MPP العالمي. أظهر تحليل الأوراق العلمية المخصصة لخوارزمية PSO أنه لا توجد حاليًا منهجية لاختيار المعلمات المثلى لأجهزة تتبع الطاقة القصوى القائمة على خوارزمية PSO للنظام الكهروضوئي. تهدف هذه الورقة إلى إنشاء طريقة مريحة ومعقولة لاختيار المعلمات المثلى لخوارزمية PSO، مع مراعاة طوبولوجيا ومعلمات محول DC - DC وتكوين الألواح الشمسية. تم تقديم طريقة جديدة لاختيار معلمات محول باك المتصل بالبطارية. تم تحديد القيمة المثلى لوقت أخذ العينات لوحدات تحكم MPP الرقمية، مما يوفر أقصى أداء لها ؛ بناءً على منهجية جديدة. تُستخدم حزمة برامج Matlab/Simulink كأداة بحث رئيسية. تحدد النتائج البارزة أن PSO المعدل ومعلماته المصممة تلبي على أفضل وجه متطلبات وحدة تحكم MPPT للنظام الكهروضوئي.

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    Authors: G. AAD; E. ABAT; B. ABBOTT; J. ABDALLAH; +196 Authors

    The ATLAS Inner Detector is a composite tracking system consisting of silicon pixels, silicon strips and straw tubes in a 2 T magnetic field. Its installation was completed in August 2008 and the detector took part in data- taking with single LHC beams and cosmic rays. The initial detector operation, hardware commissioning and in-situ calibrations are described. Tracking performance has been measured with 7.6 million cosmic-ray events, collected using a tracking trigger and reconstructed with modular pattern-recognition and fitting software. The intrinsic hit efficiency and tracking trigger efficiencies are close to 100%. Lorentz angle measurements for both electrons and holes, specific energy-loss calibration and transition radiation turn-on measurements have been performed. Different alignment techniques have been used to reconstruct the detector geometry. After the initial alignment, a transverse impact parameter resolution of 22.1+/-0.9 ��m and a relative momentum resolution ��p/p = (4.83+/-0.16) \times 10-4 GeV-1 \times pT have been measured for high momentum tracks. 34 pages, 25 figures

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    https://doi.org/10.1007/978-3-...
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    Authors: Anggoro Cahyo Fitrianto; Kunio Yoshikawa; Arif Darmawan; Koji Tokimatsu;

    Abstract Empty fruit bunch, as one product from oil palm and one of renewable energy that has the potential to replace fossil fuel in the future. Remote sensing offers the better alternative for oil palm age measurement over the conventional approach to solving the problem in the lack of information in the spatial distribution of empty fruit bunch resources. Forest Canopy Density model was employed to estimate the age of oil palm trees that used to count the amount of empty fruit bunch production in the research area. Time series remote sensing data analysis was performed to detailing the class of stands age. Based on oil palm trees age, empty fruit bunch production was estimated with the result Cikasungka area has the biggest potential production with 1.98 KT/year following by Cimulang with 1.75 KT/year and Candali with 1.72 KT/year.

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    Energy Procedia
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    After the Fukushima accident caused by the Great East Japan Earthquake, nuclear transmutation acquired much interest as an effective option of nuclear waste management. The Japan Atomic Energy Agency (JAEA) proposes the transmutation of minor actinides by an accelerator-driven system (ADS) using lead–bismuth eutectic alloy (Pb-Bi) as a spallation target and a coolant of the subcritical core. The current ADS design has 800 MWth of rated power, which is driven by a 20 MW proton LINAC, to transmute minor actinides generated from 10 units of standard light water reactors.

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    Progress in Nuclear Energy
    Article . 2015 . Peer-reviewed
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    https://doi.org/10.1007/978-4-...
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      Progress in Nuclear Energy
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    Authors: K. Watanabe; Yoshikuni Shinohara; Koji Hayashi;

    Abstract The problem of detecting in-sodium water leaks in the steam generator of liquid metal fast breeder reactor has been studied by applying the Twice-Squaring method, originally developed for acoustic detection of sodium boiling. Through the performance tests using test data synthesized by mixing experimental leak noise with background noise from real steam generators, it was concluded that the present method can detect the leak noise with signal-to-noise ratio down to −20 dB.

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    Annals of Nuclear Energy
    Article . 1996 . Peer-reviewed
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      Annals of Nuclear Energy
      Article . 1996 . Peer-reviewed
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    Authors: Salwan Tajjour; Shyam Singh Chandel; Hasmat Malik; Majed A. Alotaibi; +1 Authors

    Solar photovoltaic (PV) panel parameter estimation is vital to manage solar-based microgrid operations, for which several techniques have been developed. Solar cell modeling using metaheuristic algorithms is found to be one of the accurate techniques. However, it requires experimental datasets, which may not be available for most of the industrial modules. Therefore, this study proposed a new model to estimate the solar parameters for two types of PV panels using manufacturer datasheets only. In addition, two optimization techniques called particle swarm optimization (PSO) and genetic algorithm (GA) were also investigated for solving this problem. The predicted results showed that GA is more accurate than PSO, but PSO is faster. The new model was tested under different solar radiation conditions and found to be accurate under all conditions, with an error which varied between 7.6212 × 10−4 under standard testing conditions and 0.0032 at 200 W/m2 solar radiation. Further comparison of the proposed method with other methods in the literature showed its capability to compete with other models despite not using experimental datasets. The study is of significance for the sustainable energy management of newly established commercial PV micro grids.

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    Photonics
    Article . 2022 . Peer-reviewed
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    Photonics
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  • Authors: T. Mitani; T. Satoh; Y. Mishima; Koichi Nara;

    This paper proposes a new solution algorithm for security constrained unit commitment (SCUC) based on Lagrangian decomposition and tabu search. In partially deregulated power system, a power company encounters such problems as power flow congestions caused by unexpected power wheeling from PPSs (Power Producer & Suppliers) and as to achieve social welfare by optimally operating own generators. These problems can be solved easily through SCUC. In this paper, tabu search application to SCUC problem is proposed. It must be noted that the concept of hypothetical generator is introduced to get a computationally feasible solution. To solve the problem, the original problem can be divided into two sub-problems through Lagrangian decomposition: the unit commitment (UC) problem of each generator for the whole time horizon and the optimal operation problem of each time zone. This paper focuses on tabu search applied to solve the UC problem combined with Lagrangian decomposition. A numerical example is shown to demonstrate the algorithm.

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    Authors: Yasuaki Hijioka; Glenn R. McGregor; Saneyuki Takano; Yasushi Honda; +7 Authors

    We previously developed a model for projection of heat-related mortality attributable to climate change. The objective of this paper is to improve the fit and precision of and examine the robustness of the model.We obtained daily data for number of deaths and maximum temperature from respective governmental organizations of Japan, Korea, Taiwan, the USA, and European countries. For future projection, we used the Bergen climate model 2 (BCM2) general circulation model, the Special Report on Emissions Scenarios (SRES) A1B socioeconomic scenario, and the mortality projection for the 65+-year-old age group developed by the World Health Organization (WHO). The heat-related excess mortality was defined as follows: The temperature-mortality relation forms a V-shaped curve, and the temperature at which mortality becomes lowest is called the optimum temperature (OT). The difference in mortality between the OT and a temperature beyond the OT is the excess mortality. To develop the model for projection, we used Japanese 47-prefecture data from 1972 to 2008. Using a distributed lag nonlinear model (two-dimensional nonparametric regression of temperature and its lag effect), we included the lag effect of temperature up to 15 days, and created a risk function curve on which the projection is based. As an example, we perform a future projection using the above-mentioned risk function. In the projection, we used 1961-1990 temperature as the baseline, and temperatures in the 2030s and 2050s were projected using the BCM2 global circulation model, SRES A1B scenario, and WHO-provided annual mortality. Here, we used the "counterfactual method" to evaluate the climate change impact; For example, baseline temperature and 2030 mortality were used to determine the baseline excess, and compared with the 2030 excess, for which we used 2030 temperature and 2030 mortality. In terms of adaptation to warmer climate, we assumed 0 % adaptation when the OT as of the current climate is used and 100 % adaptation when the OT as of the future climate is used. The midpoint of the OTs of the two types of adaptation was set to be the OT for 50 % adaptation.We calculated heat-related excess mortality for 2030 and 2050.Our new model is considered to be better fit, and more precise and robust compared with the previous model.

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    Environmental Health and Preventive Medicine
    Article . 2013 . Peer-reviewed
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      Environmental Health and Preventive Medicine
      Article . 2013 . Peer-reviewed
      License: Springer TDM
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    Authors: Keiichiro Hashimoto; Tomonao Saito; Shi-Ying Lin;

    Abstract To protect the environment changing, coal combustion must reduce its CO 2 emission by capture and storage. Chemical looping is a potentially high technology for coal combustion with CO 2 capture efficiently. A chemical-looping-combustion system, using circulating fluidized bed witch consist two main reactors, a fuel reactor and an air reactor. An oxygen carrier, typically a metal oxide, is employed to transfer oxygen from the air reactor to the fuel reactor, and circulates between these two reactors. During 2012-2014, JCOAL, MHPS (Mitsubishi Hitachi Power Systems (2012-2013 Babcock-Hitachi)) and IAE(The Institute of Applied Energy) have a project funded by NEDO (New Energy and Industrial Technology Development Organization) to surveyed chemical looping technology development in the world, studied market needs of chemical looping combustion, investigated carrier costs and reactivity, etc., in order to reduce CO 2 separation recovery cost to 2,500 yen/ton of CO 2 or less. A small-scale reactor was used to study the behaviors of the direct reaction of coal with an oxygen carrier. It was found that the coal conversion efficiency increases with increasing iron level in the carrier, that the volume of unreacted CO gas increases when oxygen use in the carrier exceeds the range of Fe 2 O 3 --> Fe 3 O 4 , and that there is no notable surface melting that could obstruct particle circulation at 950C or less. A basic model of the CLC process was produced using the AspenPlus software and used to analyze the process under the conditions of a 250MWth plant. It found that the volume of circulating CLC carrier is roughly the same as the circulation of CFBC medium, and that inner desulfurization and ultra-low NO X combustion are possible. Using the results of research and process analysis, a three-tower chemical looping coal combustion technology that consists primarily of an air reactor (AR), coal reactor (CR), and volatiles reactor (VR) was selected, and an conceptual design was produced for the reactor configuration and technical parameters.

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    Energy Procedia
    Article . 2017 . Peer-reviewed
    License: CC BY NC ND
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    Energy Procedia
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      Energy Procedia
      Article . 2017 . Peer-reviewed
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      Energy Procedia
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    Authors: Herrero Martin, Rebeca; Antón Hernández, Ignacio; Sala Pano, Gabriel; De Nardis, Davide; +2 Authors

    A model to evaluate the performance of high concentrator photovoltaics (HCPV) modules (that generates current-voltage curves) has been applied together with a Monte Carlo approach to obtain a distribution of modules with a given set of characteristics (e.g., receivers electrical properties and misalignments within elementary units in modules) related to a manufacturing scenario. In this paper, the performance of CPV systems (tracker and inverter) that contain the set of simulated modules is evaluated depending on different system characteristics: inverter configuration, sorting of modules and bending of the tracker frame. Thus, the study of the HCPV technology regarding its angular constrains is fully covered by analyzing all the possible elements affecting the generated electrical power.

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    Recolector de Ciencia Abierta, RECOLECTA
    Article . 2017 . Peer-reviewed
    License: CC BY NC ND
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    Archivo Digital UPM
    Article . 2017
    License: CC BY NC ND
    https://doi.org/10.1063/1.5001...
    Conference object . 2017 . Peer-reviewed
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      Recolector de Ciencia Abierta, RECOLECTA
      Article . 2017 . Peer-reviewed
      License: CC BY NC ND
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      Archivo Digital UPM
      Article . 2017
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      https://doi.org/10.1063/1.5001...
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