Explore the words cloud of the GIESEPP project. It provides you a very rough idea of what is the project "GIESEPP" about.
The following table provides information about the project.
Coordinator |
ARIANEGROUP GMBH
Organization address contact info |
Coordinator Country | Germany [DE] |
Project website | http://www.giesepp.com |
Total cost | 10˙603˙448 € |
EC max contribution | 7˙499˙999 € (71%) |
Programme |
1. H2020-EU.2.1.6.2. (Enabling advances in space technology) 2. H2020-EU.2.1.6.1.1. (Safeguard and further develop a competitive, sustainable and entrepreneurial space industry and research community and strengthen European non-dependence in space systems) |
Code Call | H2020-COMPET-2016 |
Funding Scheme | IA |
Starting year | 2017 |
Duration (year-month-day) | from 2017-01-01 to 2020-12-31 |
Take a look of project's partnership.
# | ||||
---|---|---|---|---|
1 | ARIANEGROUP GMBH | DE (TAUFKIRCHEN) | coordinator | 2˙048˙879.00 |
2 | QINETIQ LIMITED | UK (FARNBOROUGH) | participant | 2˙049˙254.00 |
3 | COMPUTADORAS REDES E INGENIERIA SA | ES (TRES CANTOS) | participant | 972˙118.00 |
4 | AIRBUS DEFENCE AND SPACE GMBH | DE (TAUFKIRCHEN) | participant | 971˙953.00 |
5 | AST ADVANCED SPACE TECHNOLOGIES GMBH | DE (OSTERHOLZ-SCHARMBECK) | participant | 749˙260.00 |
6 | MARS SPACE LTD | UK (SOUTHAMPTON HAMPSHIRE) | participant | 275˙500.00 |
7 | UNIVERSITY OF SOUTHAMPTON | UK (SOUTHAMPTON) | participant | 258˙617.00 |
8 | OHB SYSTEM AG | DE (BREMEN) | participant | 139˙200.00 |
9 | STS SENSOR TECHNIK SIRNACH AG | CH (SIRNACH) | participant | 35˙214.00 |
10 | AIRBUS DS GMBH | DE (TAUFKIRCHEN) | participant | 0.00 |
The consortium proposes an innovative activity to develop, build and test to TRL5 the first European Plug and Play Gridded Ion Engine Standardised Electric Propulsion Platform (GIESEPP) to operate Airbus Safran Launchers and QinetiQ Space ion engines. These are the only European ion engines in the 200-700W (LEO) and 5kW (GEO) domains that are space-proven, and the consortium’s intention will be to improve European competitiveness and to maintain and secure the European non-dependence in this field. The project will design and develop a standardised electric propulsion platform for 200-700W and 5kW applications, which has the capability to run either Airbus Safran Launchers or QinetiQ thrusters. In addition, the 5kW electric propulsion system will be designed to allow clustering for 20kW EPS for space transportation, exploration and interplanetary missions. In order to cope with challenging mission scenarios, Dual Mode functionality of the thrusters will be realised. This ensures that the beneficial high Isp characteristics of Gridded Ion Engines are maintained, whilst also offering a competitive higher thrust mode. The GIESEPP systems will not be limited to xenon as an operating medium; assessments will be performed to ensure functionality with alternative propellants. The approach to system standardisation and the resulting solutions will provide highly cost competitive and innovative EPS for current and future satellite markets, whilst meeting the cost efficiency requirements. The proposal will describe the roadmap to higher TRL by 2023-2024, providing a cost competitive EPS. Finally, the proposal will address efficient exploitation of the results, demonstrating how the activity will positively increase the impact and prospects for European Ion Engines and the European Electric Propulsion System community.
Dissemination Report with a list of all activities performed and copies of all dissemination material produced V2 | Documents, reports | 2020-01-24 15:24:07 |
Dissemination Report with a list of all activities performed and copies of all dissemination material produced V1 | Documents, reports | 2020-01-24 15:24:06 |
Public Website GIESEPP.eu | Websites, patent fillings, videos etc. | 2020-01-24 15:24:06 |
GIESEPP brochure V1 | Websites, patent fillings, videos etc. | 2020-01-24 15:24:06 |
Take a look to the deliverables list in detail: detailed list of GIESEPP deliverables.
year | authors and title | journal | last update |
---|---|---|---|
2019 |
Cyril Dietz, Guilherme Claudino-E-Silva More Added Value? – An Investigation on the Commercial Benefit of Different EP Technologies for Orbital Propulsion, IEPC-2019-A883 published pages: , ISSN: , DOI: |
2020-01-24 | |
2019 |
J. Perez Luna, R.A. Lewis, N. Park, J. Bosher and F. Guarducci and F. Cannat T7 Thruster Design and Performance published pages: , ISSN: , DOI: |
2020-01-24 | |
2018 |
Birk Wollenhaupt, Markus Peukert Refinement of Performance Range and Qualification Flexibility Needs of Electric Propulsion published pages: , ISSN: , DOI: |
2020-01-24 | |
2019 |
B. Zitouni , M. Flach, H. Wulf, C. Bewick, M. Peukert EP orbit raising: environmental effects impact on satellites, modelling and challenges published pages: , ISSN: , DOI: |
2020-01-24 | |
2019 |
J. Laube, N. Massaccesi, B. Zitouni, M. Peukert EP plasma plume in orbit: Diagnostics and analysis correlation published pages: , ISSN: , DOI: |
2020-01-24 | |
2018 |
Birk Wollenhaupt, Markus Peukert Future Electric Propulsion Needs deduced from launcher and mission constraints published pages: , ISSN: , DOI: |
2020-01-24 | |
2019 |
Nazareno Fazio, Steve B. Gabriely and Igor O. Golosnoyz, Birk Wollenhaupt Mission Cost for Gridded Ion Engines using Alternative Propellants IEPC-2019-831 published pages: , ISSN: , DOI: |
2020-01-24 | |
2019 |
B. Zitouni , J. Laube, N. Massaccesi, V. Sonneveld, M. Peukert Thrusters modelling, propellant choice and plume expansion: openPlumeEP capabilities published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
J Perez Luna , R A. Lewis and M Hutchins QinetiQ High Power Electric Propulsion System and Architectural Options for Future Applications published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
F. Pinto HET / GIE / HEMPT and common building blocks published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
F. Infed Gridded Ion Engine Standardised Electric Propulsion Platforms published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
F. Pinto, J. Palencia, G. Glorieux, N. Wagner New HET and GIT PPU developments Qualification Status published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
P. N. Randall , R. A. Lewis and S. D. Clark QinetiQ T5 based Electric Propulsion System and Architectural Options for Future Applications published pages: , ISSN: , DOI: |
2020-01-24 | |
2017 |
B. Wollenhaupt, M. Peukert OHB’s reflections about the first study phase published pages: , ISSN: , DOI: |
2020-01-24 | |
2018 |
Cyril Dietz Gridded Ion Engine Standardized Electric Propulsion Platforms 2018 published pages: , ISSN: , DOI: |
2020-01-24 |
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