FP7-5TH SPACE CALL - SPACE RESEARCH AND TECHNOLOGY AT FRAUNHOFER EMI
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1 FP7-5TH SPACE CALL - SPACE RESEARCH AND TECHNOLOGY AT FRAUNHOFER EMI Vorbereitung auf die 5. Ausschreibung für Raumfahrt im 7. EU Forschungsrahmenprogramm, DLR Raumfahrt-Agentur, Bonn Bonn, Dr. Frank Schäfer [email protected] Martin Rudolph [email protected]
2 Fraunhofer EMI An institute for applied physics and engineering Fraunhofer EMI 300 Employees Budget 20 M 3 Locations Topics Freiburg Shock wave and impact physics Material sciences Computational Physics Safety technologies High-speed measurement techniques Efringen-Kirchen Kandern Fraunhofer EMI Fraunhofer Ges ells chaft Europe's largest organization for applied research 59 Fraunhofer Institutes 17,000 employees Research budget 1.5 B Offices in Europe, USA, Asia, Middle East
3 Facts on Fraunhofer EMI Business segments Defence Security Automotive Space
4 Facts on Fraunhofer EMI Business segments Defence Security Automotive Space
5 A B C D E F G H I T J K E1 = E3 + E4 + E5 + E6 E3 = E8 E9 Reducing satellite vulnerability against impacts Impact Risk-/Vulnerability modeling Reducing vulnerability Protection concepts Shielding technologies Integrated sensor systems S/C Bus Failure or S/C Mission Failure (orbital debris) ADCS Power Command & Data Comm. Payload Thermal Failure Failure Handling Failure Failure Failure E 3 E 4 E 5 E 6 E 7 and or or Heatpipe RF Harness Battery E-Box Thruster Momentum Failure Contol Failure E 8 E 9 Power Data or Harness Harness Boolean Algebra T = E1 + E2 Prop.Tank CMG E 2 = E 7 +J or S/C Payload Failure E 1 E 2 or Hypervelocity Impact Testing (c) OHB-System PNP Fuel Pipe Thruster E4 = E + F E5 = G + H E6 = I E7 = K E8 = A + B + C E 9 = D Failure mechanisms Verification of concepts Qualification of shields
6 Key technologies for in-space activities Next generation habitats: Inflatable modules Usage: manned spaceflight, orbital or planetary stations Advantages: Light-weight, large orbital volume, small package,no stiffness req. for launch Research interest: materials, packaging, deployment, protection (debris, radiation) EMI heritage: debris protection, material modelling (c) NASA MLI Debris protection Structural restraint Air containment, fire and puncture protection (c) NASA Role: Team member or coordinator
7 Key technologies for in-space activities New concepts for launch of small sub-orbital payloads Light gas guns provide high altitude capability for small payloads Inflatable spheres and mylar chaff clouds for meteorological missions Compact sensors for geophysical or astrophysical sciences Hypersonic flight & re-entry experiments Thermal Protection Sabot Socket Pusher-Plate Sabot Technology under development at EMI Projectile Tip Battery Instruments Payload Thermal Protection Role: Team member or coordinator
8 Fraunhofer Innovation Cluster Future Urban Security BW Lead by Fraunhofer EMI; Wholistic approach to Urban Security and Resilience Baseline: Prevent, Protect, Recover Goal: Products and Services for the Security Market Protection and resilience in urban infrastructures Support of emergency response units Detection and neutralisation of explosives and dangerous substances Integrierte, innovative Sicherheitstechnologien
9 Fraunhofer Innovation Cluster Future Urban Security BW Strong partners in public authorities, research, and industry
10 Security Research Situational awareness in large-scale critical infrastructure Sensor networks for tunnel security BMBF project AISIS ( ) Sensors for the detection of explosions assessment of residual load-carrying capability of building structure Energy-autarkic wireless sensor network I/F to building management system and security center Automatic data assessment and generation of a situational awareness report Reports for emergency response units
11 fire brigades, ambulance, police, THW Security Research Situational awareness in large-scale critical infrastructure AISIS das Informationsgewinnungs- und Lagebewertungssystem Monitoring of Explosions Data transfer in large tunnels Situational Awareness Report Alarming and support of res cue units Wireless sensor node, integrated in tunnel wall 100kPa Signal of a recorded explosion ms Befestigungspunkte für Funksensoren in einer Tunnelwand AISIS Server: H/W and S/W Interfaces * 0 # BMZ Brandmeldezentrale Building management system
12 Research and development for in-situ component Combination of ground- and satellite-based data Distributed Ground Sensor Network Disaster monitoring with sensors Earth Observation Satellites Optical or Radar satellites Ground Sensor Network - environmental monitors - autonomous Internet Data Center - data fusion - data archiving Role: Team member Interface - user-specific reports - H/W and S/W IF - Emergency Response Units
13 Research and development for in-situ component Combination of ground- and satellite-based data Distributed Ground Sensor Network Disaster monitoring with sensors Earth Observation Satellites Optical or Radar satellites Potential EMI Contributions Ground Sensor Network - environmental monitors - autonomous Internet Data Center - data fusion - data archiving Role: Team member Interface - user-specific reports - H/W and S/W IF - Emergency Response Units
14 EMI experience in FP7 3 Projects FP7-SPACE (Kicked off: P2ROTECT, ReVuS; 1 Project in negotiation) EMI Role: Junior Partner 6 Projects FP7-SECURITY (2 Projects running; 4 in negotiation) EMI Role (5 projects): Junior Partner EMI Role (1 Project): Coordinator
15 Contact Fraunhofer EMI (Ernst-Mach-Institut) Dr. Frank Schäfer - [email protected] Tel Martin Rudolph - [email protected] Tel Eckerstr Freiburg
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