Space Debris Activities at ESA in 2012



Similar documents
The Threat of Orbital Debris and Protecting NASA Space Assets from Satellite Collisions 28 April 2009

Consideration of Space Debris Mitigation Requirements in the Operation of LEO Missions

Orbital Debris. Quarterly News. Inside... Increase in ISS Debris Avoidance Maneuvers. Volume 16, Issue 2 April 2012

Analysis of the 2007 Chinese ASAT Test and the Impact of its Debris on the Space Environment. T.S. Kelso Center for Space Standards & Innovation

GEO protected region: ISON capabilities to provide informational support for tasks of spacecraft flight safety and space debris removal

DEVELOPMENT OF AN ARCHITECTURE OF SUN-SYNCHRONOUS ORBITAL SLOTS TO MINIMIZE CONJUNCTIONS. Brian Weeden Secure World Foundation

Japanese Space Industry s Efforts regarding Long-term Sustainability of Space Activities. 14 Feb The Society of Japanese Aerospace Companies

Small Satellite Space Traffic Management

Stability of the Future LEO Environment

A/AC.105/C.1/2012/CRP.16

Development of a Sun Synchronous. Conjunctions

EVOLUTION OF THE DEBRIS CLOUD GENERATED BY THE FENGYUN-1C FRAGMENTATION EVENT

Korean Space Law Dr. Joon Lee Korea Aerospace Research Institute.

The predicted growth of the low Earth orbit space debris environment - an assessment of future risk for spacecraft

Satellite Communications

Can space insurance offer workable solutions for outer space sustainability

DEOS. Deutsche Orbitale Servicing Mission. The In-flight Technology Demonstration of Germany s Robotics Approach to Service Satellites

How To Understand The History Of Space Exploration

ACTIVE DEBRIS REMOVAL MISSION WITH SMALL SATELLITE

Artificial Satellites Earth & Sky

Second International Symposium on Advanced Radio Technologies Boulder Co, September 8-10, 1999

The European Satellite Navigation Programmes EGNOS and Galileo

US ACTIVE DEBRIS REMOVAL (ADR) EFFORTS

AGI Software for Space Situational Awareness

Small Satellites: Chances and Challenges

The Space Situation Monitoring Laboratory What s Happening in Space?

Detecting, Tracking and Imaging Space Debris

The Elwing Company THE ELWING COMPANY. EPIC Workshop Products and Systems

Satellite Communication Systems. mgr inż. Krzysztof Włostowski Instytut Telekomunikacji PW

Considerations on Space Liability Insurance

The Evolution of the Global Navigation Satellite System (GNSS) Spectrum Use

TOPO Trajectory Operations Officer

Collaborative Work Environment for Operational Conjunction Assessment. François Laporte Stéphane Christy Monique Moury CNES, France

June VV 05. Sentinel-2A LOGOTYPE COMPLET (SYMBOLE ET TYPOGRAPHIE) 294C

Long Term Sustainability of Outer Space Activities. - A Satellite Industry Perspective - Vienna 14 th February 2013

The German interagency approach to SSA

INTERNATIONAL PERSPECTIVES ON ON-ORBIT SATELLITE SERVICING AND ACTIVE DEBRIS REMOVAL AND RECOMMENDATIONS FOR A SUSTAINABLE PATH FORWARD

ANALOG SATELLITE COMMUNICATION : Introduction, Base band analog (Voice) signal,

Toulouse Business School. Active Debris Removal: A Business Opportunity?

Satellite Breakup Risk Mitigation

HybridSail. Hybrid Solar Sails for Active Debris Removal Final Report

Searching for space debris elements with the Pi of the Sky system

Large FOV Mobile E-O Telescope for Searching and Tracking Low-orbit Micro-satellites and Space Debris

Prospects for an Improved Lense-Thirring Test with SLR and the GRACE Gravity Mission

State of the Satellite Industry Report June 2013

Dr. Joseph N. Pelton, Former Dean International Space University

SPACE DEBRIS AND SPACE TRAFFIC MANAGEMENT: TWO CONTEMPORARY ISSUES OF SUSTAINABLE SPACE SECURITY

The European and UK Space Agencies

Visualizing Wireless Transfer of Power: Proposal for A Five-Nation Demonstration by ISDC2012: Washington DC, May 26, 2012

What, Why and How. Hosted Payloads: A guide to commercially hosted government payloads from the Hosted Payload Alliance.

Status, Development and Application

Mobile Communications: Satellite Systems

COMPARISON OF EISCAT RADAR DATA ON SPACE DEBRIS WITH MODEL PREDICTIONS BY THE MASTER MODEL OF ESA

Section 4: The Basics of Satellite Orbits

2. Orbits. FER-Zagreb, Satellite communication systems 2011/12

JAC Software, Solving Conjunction Assessment Issues. François Laporte CNES, France

Space Flight Project Work Breakdown Structure

The European GNSS Programmes EGNOS and Galileo

GAO. SPACE SURVEILLANCE DOD and NASA Need Consolidated Requirements and a Coordinated Plan. Report to Congressional Requesters

Astromechanics Two-Body Problem (Cont)

RS platforms. Fabio Dell Acqua - Gruppo di Telerilevamento

C-S TEAM. Page 1 of 5

How To Understand The Brazilian Sounding Rocket Vbso 30

Analysis on the Long-term Orbital Evolution and Maintenance of KOMPSAT-2

The Potential of Light UAS for Police Applications

5. Satellite Systems. History of Satellite Communications

ORBITAL RECOVERY S RESPONSIVE COMMERCIAL SPACE TUG FOR LIFE EXTENSION MISSIONS

Mobile Computing. Chapter 5: Satellite Systems

TAI Turkish Aerospace Industries, Inc.

2. Typology of space value chain actors

The µtorque Momentum-Exchange Tether Experiment

Mobile Communications Chapter 5: Satellite Systems

AIDA: Asteroid Impact & Deflection Assessment A Joint ESA-NASA Mission. Joint ESA NASA AIDA Team

ADS-B over Satellite Global Air Traffic Surveillance from Space

Orbital Debris: Technical and Legal Issues and Solutions. Michael W. Taylor

SUN-SYNCHRONOUS ORBIT SLOT ARCHITECTURE ANALYSIS AND DEVELOPMENT. A Thesis. Presented to. the Faculty of California Polytechnic State University

Small Satellite Program Overview

A DUAL LAUNCH FOR MOBILE COMMUNICATIONS AND METEOROLOGY SATELLITES

GALILEO System Status ESA Galileo Project Office Workshop Satellietnavigatie Haarlem HSB / NIN / VPN / GIN 12 December 2014

AUTOMATED OPERATIONAL MULTI-TRACKING HIGH PRECISION ORBIT DETERMINATION FOR LEO MISSIONS

Software Classification Methodology and Standardisation

Modeling and Simulation Design for Load Testing a Large Space High Accuracy Catalog. Barry S. Graham 46 Test Squadron (Tybrin Corporation)

Connecting Air-Ground Operators through the Upper Aerial Layer

The National Strategy, Current Activities for Space Technology Development and Application

Technologies for Re-entry Vehicles. SHEFEX and REX FreeFlyer, DLR s Re-Entry Program. Hendrik Weihs. Folie 1. Vortrag > Autor > Dokumentname > Datum

How Long Do You Need To Achieve Your Scientific Objectives?

Emerging commercial space technologies, along with complex and substantial

How To Run A Space Station From A Polar Relay Station

Overview of Ka-band Satellite System Developments & Key Regulatory Issues

Transcription:

Space Debris Activities at ESA in 2012 Heiner Klinkrad ESA Space Debris Office H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 1

Introduction & Current Status 4,915 launches since Sputnik-1 produced ~16,967 (~23,000) tracked space objects by 2012 with an on-orbit mass of ~ 6,800 tonnes sources of tracked & cataloged space objects: 60% explosion & collision fragments (~250 events) break-up avoidance 6% active satellites + 16% retired satellites end-of-mission disposal 11% spent orbital stages + 7% mission related objects fewer mission-related objects tracking size threshold of operational surveillance networks 10 cm 10 cm objects (~29,000) are likely to cause catastrophic break-ups H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 2

Distribution of Catalog-Size Space Objects d>10cm H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 3

ESA Launches in 2012 Vega maiden launch, 2012-006A-K (Feb.13, 2012, from CSG): main payload LARES satellite (I); mission objective: space geodesy; orbit: 1426km x 1451km @ 69.49 o ; size & mass: 36.4cm Ø, 400kg secondary payloads 8 CubeSat-type passengers (each ~1kg); orbits: 310km x 1440km @ 69.49 o ; orbit lifetimes: ~9 years Avum orbital stage final orbit: 274km x 1430km @ 69.50 o ; size & mass: 1.7m x 2.3m Ø, 131kg (dry); orbit lifetime: ~9 years Galileo IOV 3 & 4 launch, 2012-049A-B (Oct.21, 2012, from CSG): payloads Galileo IOV 3 & 4; mission objective: navigation & timing services; orbits: 23,216km x 23,223km @ 55.3 o ; size & mass: 1.7m x 2.3m x 14.5m, 700kg one mission-related object was released and cataloged H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 4

Collision Avoidance for ESA Satellites conjunction statistics in 2012: Envisat 21(9) conjunctions within 300m, and 53(24) conjunctions with a collision probability exceeding 1:10,000 CryoSat-2 13 conjunctions within 300m, and 1 conjunction with a collision probability exceeding 1:10,000 68% (57%) of all events for Envisat (CryoSat-2) were associated with fragments of the Iridium-33/Cosmos-2251 and FengYun-1C collisions no evasive maneuvers were performed in 2012 for ESA satellites; Envisat was lost on April 8, 2012, following a spacecraft anomaly H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 5

Other ESA Activities on Debris Mitigation Envisat anomaly: following the declaration of a spacecraft emergency extensive recovery attempts were initiated as of April 8, 2012; in spite of strong international support (particularly by the USA, France and Germany) the mission was declared lost on June 29, 2012 since Envisat was approved in 1989 and designed in the 1990s, the mission is not compliant with the 25 year orbit lifetime limitation ESA CleanSpace initiative: several aspects of a sustainable access to and use of space (ESA s Agenda 2015) are addressed, with debris mitigation and environment remediation (mass removal from orbit) being part of this effort ESA Requirements on Space Debris Mitigation: an updated set of instructions is in preparation as an ESA IPOL document, with close coherence to the ISO 24113 standard a supporting mitigation handbook and a related training curriculum for ESA Project engineers are being developed H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 6

Classification of GEO Objects background: ESA s report on the Classification of GEO Objects (issue 15, 2013) describes the orbital and operational status of tracked objects in or near GEO (for orbits with e < 0.2, i < 70 o, 0.9 < n < 1.1 revs/d) orbit data are based on information from the USA (USAF/SpaceTrack) and from Russia (KIAM) the information is merged & processed by ESA s DISCOS database GEO end-of-life disposals: based on orbit time histories and the termination of associated orbit/longitude maintenance maneuvers, spacecraft retirements are identified, and end-of-life disposal maneuvers are analyzed verification of the disposal status is done with spacecraft operators and orbit data providers Availability of Classification of GEO Objects (issue 15, 2013): please send your e-mail request to ESA, c/o Dr. Tim Flohrer, ESA Space Debris Office (Tim.Flohrer@esa.int) H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 7

GEO Satellite Retirements in 2012 9 spacecraft were re-orbited above GEO+250km (IADC conformant): Intelsat VI F-2 (89087A, INTELSAT) 336 km x 382 km Inmarsat 2-F4 (92021B, INMARSAT) 635 km x 697 km AsiaSat 2 (95064A, Hongkong ) 247 km x 299 km AMOS 1/Intelsat 24 (96030B, Israel/INTELSAT) 867 km x 950 km Telecom 2D (96044B, France) 449 km x 591 km Apstar 2R (97062A, China) 257 km x 345 km Zhongxing-22 (00003A, China) 835 km x 860 km Eutelsat W1 (00052A, EUTELSAT) 564 km x 631 km USA 111 (UFO F5) (95027A, USA) 422 km x 443 km 4 spacecraft were re-orbited too low: GOES 7 (87022A, USA) 121 km x 89 km Palapa C1 (96006A, Indonesia) 156 km x 227 km Insat 2E (99016A, India) 149 km x 198 km Beidou 3 (03021C, China) 135 km x 145 km H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 8

GEO Satellite Retirements in 2012 (cont d) 1 spacecraft was abandoned in GEO: Cakrawatra 1 (97071B, Indonesia) abandoned in L1 libration 2 rocket bodies/kick-motors launched in 2012 are within GEO±200km: FengYun 2F AKM (12002C, China) 18 km x 480 km Proton-K/DM-2 4 th stage (12012D, Russia) 38 km x +58 km GEO +/- 200 km post-mission re-orbiting practices are discernible in the perigee altitude distribution near GEO H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 9

GEO Satellite Retirement Statistics 99-02 03 04 05 06 07 08 09 10 11 12 Total Left at L 1 14 2 1 2 1 2 3 1 1 27 (12.9%) Left at L 2 4 1 1 1 1 1 9 (4.3%) Left at L 1 /L 2 2 1 1 4 (1.9%) Drift orbit (too low) Drift orbit (compliant) 17 7 5 5 7 1 1 6 4 3 4 60 (28.9%) 14 8 5 11 9 11 6 12 11 12 9 108 (51.9%) Annual Total 51 16 13 19 19 13 11 21 16 15 14 208 (100%) compliance with GEO end-of-life re-orbit guidelines (e.g. from IADC) has improved from about 30% to more than 50% since 2002 abandonment of GEO satellites at their end-of-life has been reduced from about 40% to less than 13% since 2002 H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 10

Orbit Control Status of GEO Objects in 2012 289 (21%) E-W/N-S control 133 (9%) only E-W control 16 (1%) undetermined 9 (<1%) highly inclined 78 (5%) uncontrolled 18 (1%) L1+L2 libration 46 (3%) L2 libration 114 (8%) L1 libration 661 (48%) drift (includes re-orbits) 1,117 TLE catalog objects met near GEO criteria (e < 0.2, 0.9 < n < 1.1 rev/d, i < 70 o ); 247 more objects are known to be in this area controlled 422 (289 thereof E-W/N-S); uncontrolled 942 H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 11

Status of GEO Objects vs. Launch Year 36 GEO objects were injected in 2012 (34 payloads + 2 rocket bodies) typical operational lifetimes of GEO satellites are about 15 years; the share of abandoned satellites has decrease since the late 1990s H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 12

Conclusions the compliance with recommended post-mission disposal measures for GEO spacecraft has continued to improve during the past decade (from about 30% to more than 50% today) space debris mitigation is a necessary, but insufficient step; it must be accompanied by space debris environment remediation mass removal, particularly from the protected LEO orbit regime, is essential for long-term environment stability, and for a sustainable use of outer space; ESA supports related activities at the LTSSA WG of UNCOPUOS, and in ESA s CleanSpace initiative ESA is committed to debris mitigation and environment remediation in cooperation and coordination with international partners H. Klinkrad (ESA) 50 th UNCOPUOS STSC 12-Feb-2013 page 13