H2020Doctoral network2019–2023

Stardust-R · Stardust Reloaded

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2019-01-01 → 2023-06-30
EU contribution
€3,867,285
Participants
23
Scheme
MSCA-ITN

Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.

Results in brief

Stardust Reloaded

Stardust-R addresses the growing need for a sustainable exploitation of space, the resilience of the space environment, the threat and opportunities coming from asteroids and comets. Asteroids and space debris represent a significant hazard for both space and terrestrial assets, but they also represent an important commercial and scientific opportunity. From the exploitation of in-situ resources on asteroids, to on orbit servicing, from the exploration and characterisation of minor bodies to advanced concepts like the Phoenix programme of DARPA, both asteroids and space debris represent one of the most interesting challenges of space science and technology. Some scholars theorise that the Kessler syndrome (where the density of objects in orbit is high enough that collisions could set off a cascade) has already begun and is simply proceeding at a slow pace. Furthermore, current plans to inject increasingly larger constellations of small satellites into space and the emergence of the New Space trend, will critically increase the traffic. This requires a substantially new approach to collision avoidance and satellite operations, even before thinking of debris removal and satellite disposal. The impact on the space environment is going to be unprecedented, posing a serious question on its stability and resilience to any incident or anomalous event. Although statistically less likely to occur, an asteroid impact would have devastating consequences for our planet. An impact with a large to medium (~10 km to ~300 m diameter) asteroid is unlikely, but not negligible and the long-term prediction of the probability of an impact is not a trivial matter. Furthermore, impacts with smaller size objects, between 10 m to 100 m diameter, are expected to occur more frequently and hence are, proportionally, equally dangerous for humans and assets on Earth and in space. The aim of Stardust-R is to develop enabling technologies and effective solutions to critical and emerging problems in planetary defence, minor body exploration and the sustainable exploitation of space. The key scientific objectives are: 1) to globally characterise the dynamics of objects around the Earth to define disposal solutions, 2) to correlate spatially and temporally distant events and families of debris to their parent object, 3) to quantify uncertainty in celestial mechanics to accurately predict the probability of impact and collision and quantify the resilience of space systems and environment, 4) to develop tools and methods for space traffic management, 5) to define a criticality index for small asteroids to identify the need for exploration/characterisation, the possibility for exploitation and the method of deflection, 6) to develop a new distribution model for small size asteroids(<100m), 7) to develop systems and algorithms to explore and land on minor bodies with small spacecraft. Conclusions of the Action By the end of the action and despite COVID, Stardust-R achieved most of the planned objectives and developed essential tools and capabilities to support the sustainable use of space, manage the space environment, and explore minor bodies in view of future planetary defence missions but also in view of a future sustainable exploitation of their resources.

Data: CORDIS, © European Union

Project objective

The current amount of space debris in orbit combined with the expected increase in traffic due to future mega-constallations will have an unprecedented impact on the space environment, posing a serious question on its stability and resilience to any incident or anomalous event. Although statistically less likely to occur, an asteroid impact would have devastating consequences for our planet. Thus Stardust-R will address the growing need for a sustainable exploitation of space, the resilience of the space environment, the threat and opportunities coming from asteroids and comets and the compelling need for properly trained specialists who can tackle these issues.The key scientific objectives are: 1) to globally characterise the dynamics of objects around the Earth to define disposal solutions, 2) to correlate spatially and temporally distant events and families of debris to their parent object, 3) to quantify uncertainty in celestial mechanics to accurately predict the probability of impact and collision and quantify the resilience of space systems and environment, 4) to develop AI tools and methods for space traffic management, 5) to define a criticality index for small asteroids to identify the need for exploration/characterisation, the possibility for exploitation and the method of deflection, 6) to develop a new distribution model for small size asteroids, 7) to develop systems and algorithms to explore and land on minor bodies with autonomous nano-spacecraft.These objectives will be achieved via 15 projects developed by 15 Early Stage Researchers who will be trained in math phyisics, computer science and aerospace engineering to provide effective solutions to make the space environment resilient, space exploitation sustainable, learn more about minor bodies and ultimately protect Earth and our space assets.

Original text from CORDIS.

Participants

  • UNIVERSITY OF STRATHCLYDE · GlasgowCoordinatorUnited Kingdom
  • ACADEMY OF ATHENS · ATHENSGreece
  • AIRBUS DEFENCE AND SPACE LTD · StevenageUnited Kingdom
  • ARISTOTELIO PANEPISTIMIO THESSALONIKIS · THESSALONIKIGreece
  • ARIZONA BOARD OF REGENTS · TempeUnited States
  • CENTRE NATIONAL D'ETUDES SPATIALES - CNES · ParisFrance
  • DEIMOS SPACE SOCIEDAD LIMITADA UNIPERSONAL · Tres Cantos (Madrid)Spain
  • DEUTSCHES FORSCHUNGSZENTRUM FUR KUNSTLICHE INTELLIGENZ GMBH · KaiserslauternGermany
  • DEUTSCHES ZENTRUM FUR LUFT - UND RAUMFAHRT EV · KOLNGermany
  • EUROPEAN SPACE AGENCY · PARISFrance
  • Faculty of Mathematics, University of Belgrade · BelgradeSerbia
  • HYPERION TECHNOLOGIES BV · DELFTNetherlands
  • Kyoto University · KyotoCity levelJapan
  • POLITECNICO DI MILANO · MilanoItaly
  • TECHNISCHE UNIVERSITEIT DELFT · DelftNetherlands
  • THE UNIVERSITY OF TEXAS SYSTEM · AustinUnited States
  • UNIVERSIDAD AUTONOMA DE MADRID · MadridSpain
  • UNIVERSIDAD CARLOS III DE MADRID · Getafe (Madrid)Spain
  • UNIVERSIDAD POLITECNICA DE MADRID · MadridSpain
  • UNIVERSITA DEGLI STUDI DI ROMA TOR VERGATA · RomaItaly
  • UNIVERSITA DI PISA · PisaItaly
  • UNIVERSITAET BREMEN · BremenGermany
  • UNIVERSITATEA ALEXANDRU IOAN CUZA DIN IASI · IasiRomania

Links

Data: CORDIS, © European Union