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SPATIAL SERVICES GMBH

SPATIAL SERVICES GMBH

4 Projects, page 1 of 1
  • Funder: European Commission Project Code: 821952
    Overall Budget: 999,966 EURFunder Contribution: 999,966 EUR

    The overall objective of CopHub.AC is to create a knowledge and innovation hub with several nodes (secretariat, research briefs, knowledge landscape, outreach, sustainability) to focus and link ongoing R&D activities in Copernicus-relevant academic fields, and to sustain the innovation process from academia to businesses on the highest possible scientific and technical level, with a clear commitment to a full thematic and geographic coverage for a Europe-wide boost in space uptake. The CopHub.AC consortium led by PLUS / Z_GIS will provide the following objectives: i) foster the enlargement of the Copernicus Academy ecosystem through a well-orchestrated set of tools and structures; ii) reinforce the R&I capacities of Copernicus Academies and channel their outputs within an improved format of research briefs; iii) inform industry, educational networks, authorities and the citizen about Copernicus and its societal benefits. iv) promote capacity building of and connectivity with the Copernicus Relays Network; v) promote the long-term impact and sustainability of the Copernicus Academy network through the establishment of a secretariat, a monitoring process and a forward looking roadmap. A duration of 24 months is envisaged. During the second year, the EC will be provided with recommendations for the continuation of the activities under long-term funding.

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  • Funder: European Commission Project Code: 591991-EPP-1-2017-1-IT-EPPKA2-SSA-B
    Funder Contribution: 3,876,040 EUR

    EO4GEO – “Towards an innovative strategy for skills development and capacity building in the space geo-information sector supporting Copernicus User Uptake”. EO4GEO is an Erasmus+ Sector Skills Alliance gathering 26 partners from 12 countries from academia, private and public sector active in the education/training and space/geospatial sectors. EO4GEO aims to help bridging the skills gap between supply and demand of education and training in the space/geospatial sector by reinforcing the existing ecosystem and fostering the uptake and integration of space/geospatial data and services in end-user applications. EO4GEO will work in an multi- and interdisciplinary way and apply innovative solutions for its education and training actions including: case based and collaborative learning scenarios; learning-while-doing in a living lab environment; on-the-job training; the co-creation of knowledge, skills and competencies; etc. EO4GEO will define a long-term and sustainable strategy to fill the gap between supply of and demand for space/geospatial education and training taking into account the current and expected technological and non-technological developments in the space/geospatial and related sectors (e.g. ICT). The strategy will be implemented by: creating and maintaining an ontology-based Body of Knowledge for the space/geospatial sector based on previous efforts; developing and integrating a dynamic collaborative platform with associated tools; designing and developing a series of curricula and a rich portfolio of training modules directly usable in the context of Copernicus and other relevant programmes and conducting a series of training actions for a selected set of scenario’s in three sub-sectors - integrated applications, smart cities and climate change to test and validate the approach. Finally a long-term Action Plan will be developed and endorsed to roll-out and sustain the proposed solutions.

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  • Funder: European Commission Project Code: 101157942
    Overall Budget: 9,148,030 EURFunder Contribution: 8,499,980 EUR

    DANSER represents a multidisciplinary holistic and scientific based approach focused on the Danube River basin, a vital yet sensitive ecosystem facing climate change and human impacts. DANSER addresses pressing sediment management needs in the Danube River ecosystem, incorporating cutting-edge technologies and aligning with EU policies and directives. Especially attaining the core guidelines of the Danube Sediments Management Guidance. DANSER delivers a pilot phase and envisages the deployment phase, with a strong emphasis on demonstrating active and passive innovative solutions, such as a) spatio-temporal mapping of natural and anthropogenic fluvial processes, b) sediment transport modelling, (c) sediment dating by radionuclide and radiometric methods, d) historical pollution analysis (e) geophysical survey and 3D historical reconstruction of the demonstration sites, (f) river-groundwater dynamics and pollution transport modelling, (g) river processes forecast simulations based on historical and active processes, (h) sediment budget analysis based on sedimentation measuring stations, UAV and bathymetry surveys, (i) water levels and quality monitoring and analysis j) river-side arm hydrotechnical connectivity interventions, (k) stakeholder-engaged sediment parametric evaluation and co management and (l) Nature based solutions for biodiversity characterization monitoring and improvement. On the soft measures side, DANSER enforces proactively a transnational sediment task force, from cooperating with all related instances, and commits with local communities and citizens engagement, including participatory tools. DANSER seeks to restore sediment balance, improve sediment flow and quality, characterise pollution transport mechanisms and integrate such actions and knowledge with EU and worldwide counterparts while still sustaining local and regional economies. DANSER will contribute significantly to the create a sustainable and harmonious human-Danube relationships.

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  • Funder: European Commission Project Code: 101060415
    Overall Budget: 12,213,800 EURFunder Contribution: 12,213,800 EUR

    The importance of biodiversity (BD) and healthy ecosystems and the services they deliver has increasingly been acknowledged. Policy initiatives, such as the EU BD Strategies 2020 and 2030, IPBES, IPCC and CBD were launched to address BD, natural capital and related values. Research has created a knowledge base to better understand nature-human interactions that are at the base of ecosystem services (ES) delivery. The key aim of related actions is to provide robust information that can be harnessed to support protection, restoration and sustainable as well as climate-neutral use of ecosystems in the EU by 2030. MAES has provided the conceptual, methodological and data base for comprehensive assessments on different spatial scales, including the EU-wide assessment (2020) and assessments in EU member states. Knowledge and data for different ecosystem types (including protected and marine areas) are increasingly available. The next step is to integrate the different MAES components (ecosystem mapping, condition, ES, accounting) and to enable the uptake of ES in decision making. Key challenges include the proof of BD-ecosystem condition-ES relationships and to link them to EU policies. The consortium brings together experts from all EU member states, associated countries and EU overseas regions with stakeholders from various public and private sectors. The expertise in the consortium includes leading experts (ecologists, economists, social scientists) on ES science, ecosystem accounting and on science-policy-business interfaces from related actions (OpenNESS, ESMERALDA, MAIA, MAES, ESP, IPBES, BD Partnership). Therefore, the project will successfully address the call's challenges and provide applicable tools and models together with guidance how to use them. The project will deliver real cases for an evidence-, ES-based and harmonised decision making across Europe, enabling transformative change to halt BD decline and to secure essential ES-sustainable supply and use.

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