State Accountability for Space Debris

State Accountability for Space Debris
Author: Peter Stubbe
Publisher: BRILL
Total Pages: 552
Release: 2017-11-13
Genre: Law
ISBN: 9004314083

In State Accountability for Space Debris Peter Stubbe examines the legal consequences of space debris pollution which, he argues, is a global environmental concern. The study finds that the customary ‘no harm’ rule and Article IX of the Outer Space Treaty obligate States to prevent the generation of debris and that the international community as a whole has a legitimate interest in their compliance. A breach of these obligations entails the responsibility of a State and compensation must be provided for damage caused by space debris. The author treats responsibility and liability separately and thoroughly scrutinizes both legal regimes with the help of common analytical elements. Finally, Peter Stubbe argues that a comprehensive traffic management system is required so as to ensure the safe and sustainable use of outer space.

Orbital Debris

Orbital Debris
Author: National Research Council
Publisher: National Academies Press
Total Pages: 225
Release: 1995-07-07
Genre: Science
ISBN: 0309051258

Since the beginning of space flight, the collision hazard in Earth orbit has increased as the number of artificial objects orbiting the Earth has grown. Spacecraft performing communications, navigation, scientific, and other missions now share Earth orbit with spent rocket bodies, nonfunctional spacecraft, fragments from spacecraft breakups, and other debris created as a byproduct of space operations. Orbital Debris examines the methods we can use to characterize orbital debris, estimates the magnitude of the debris population, and assesses the hazard that this population poses to spacecraft. Potential methods to protect spacecraft are explored. The report also takes a close look at the projected future growth in the debris population and evaluates approaches to reducing that growth. Orbital Debris offers clear recommendations for targeted research on the debris population, for methods to improve the protection of spacecraft, on methods to reduce the creation of debris in the future, and much more.

Achieving Science with CubeSats

Achieving Science with CubeSats
Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
Total Pages: 131
Release: 2016-11-06
Genre: Science
ISBN: 030944263X

Space-based observations have transformed our understanding of Earth, its environment, the solar system and the universe at large. During past decades, driven by increasingly advanced science questions, space observatories have become more sophisticated and more complex, with costs often growing to billions of dollars. Although these kinds of ever-more-sophisticated missions will continue into the future, small satellites, ranging in mass between 500 kg to 0.1 kg, are gaining momentum as an additional means to address targeted science questions in a rapid, and possibly more affordable, manner. Within the category of small satellites, CubeSats have emerged as a space-platform defined in terms of (10 cm x 10 cm x 10 cm)- sized cubic units of approximately 1.3 kg each called "U's." Historically, CubeSats were developed as training projects to expose students to the challenges of real-world engineering practices and system design. Yet, their use has rapidly spread within academia, industry, and government agencies both nationally and internationally. In particular, CubeSats have caught the attention of parts of the U.S. space science community, which sees this platform, despite its inherent constraints, as a way to affordably access space and perform unique measurements of scientific value. The first science results from such CubeSats have only recently become available; however, questions remain regarding the scientific potential and technological promise of CubeSats in the future. Achieving Science with CubeSats reviews the current state of the scientific potential and technological promise of CubeSats. This report focuses on the platform's promise to obtain high- priority science data, as defined in recent decadal surveys in astronomy and astrophysics, Earth science and applications from space, planetary science, and solar and space physics (heliophysics); the science priorities identified in the 2014 NASA Science Plan; and the potential for CubeSats to advance biology and microgravity research. It provides a list of sample science goals for CubeSats, many of which address targeted science, often in coordination with other spacecraft, or use "sacrificial," or high-risk, orbits that lead to the demise of the satellite after critical data have been collected. Other goals relate to the use of CubeSats as constellations or swarms deploying tens to hundreds of CubeSats that function as one distributed array of measurements.

The Geostationary Ring

The Geostationary Ring
Author: Martha Mejía-Kaiser
Publisher: BRILL
Total Pages: 502
Release: 2020-06-29
Genre: Law
ISBN: 900441102X

The Geostationary Ring: Practice and Law by Martha Mejía-Kaiser addresses numerous physical aspects of this highly sought-after orbital region and analyses in unprecedented detail the evolution of its use, coordination and related disputes and efforts to keep it operational by clearing it of space debris.

Dispute Settlement in International Space Law

Dispute Settlement in International Space Law
Author: Gérardine Goh
Publisher: BRILL
Total Pages: 424
Release: 2007-06-30
Genre: Law
ISBN: 9047419464

The existence of international law, with its rights, rules and regulations is futile without an effective enforcement mechanism that provides a sufficient and adequate remedy. International space law is particularly significant in the evolution of international dispute settlement because it involves a consideration of issues from an international and interdisciplinary perspective. These issues range from policies of regional and international organizations; to juridical dispute settlement and global governance; to fiscal entrepreneurship and business efficacy; and to scientific breakthroughs and technological advances. In this context, this book looks at an international and interdisciplinary approach in dealing with dispute resolution in space activities. It proposes a workable legal framework for dispute resolution in outer space, together with a mechanism for enforcement and verification.

Indian Review of Air and Space Law

Indian Review of Air and Space Law
Author: Contributing Authors
Publisher: Centre for Research in Air and Space Law, MNLU Mumbai
Total Pages: 202
Release: 2024-05-01
Genre: Law
ISBN:

Indian Review of Air and Space Law published by the Centre for Research in Air and Space Law at Maharashtra National Law University Mumbai aims to provide a unique forum for practitioners, regulators, policymakers, and academics who deal with international, regional, and national aviation and space law and policy. It is an academically led peer-reviewed academic review that aims to publish high-quality scholarship on air and space law spanning all areas including comparative, international, and multidisciplinary perspectives.

Indian Review of Air and Space Law

Indian Review of Air and Space Law
Author: Adithya Variath
Publisher: Centre for Research in Air and Space Law, MNLU Mumbai
Total Pages: 131
Release: 2023-10-08
Genre: Law
ISBN:

Indian Review of Air and Space Law published by the Centre for Research in Air and Space Law at Maharashtra National Law University Mumbai aims to provide a unique forum for practitioners, regulators, policymakers and academics who deal with international, regional and national aviation and space law and policy. It is an academically led peer-reviewed academic review that aims to publish high-quality scholarship on air and space law spanning all areas including comparative, international and multidisciplinary perspectives.

Buddhist Ecological Protection of Space

Buddhist Ecological Protection of Space
Author: Daniel Capper
Publisher: Rowman & Littlefield
Total Pages: 167
Release: 2022-10-21
Genre: Religion
ISBN: 1666922412

This seminal monograph provides the essential guidance that we need to act as responsible ecological citizens while we expand our reach beyond Earth. The emergence of numerous national space programs along with several potent commercial presences prompts our attention to urgent environmental issues like what to do with the large mass of debris that orbits Earth, potential best practices for mining our moon, how to appropriately search for microscopic life, or whether to alter the ecology of Mars to suit humans better. This book not only examines the science and morals behind these potential ecological pitfall scenarios beyond Earth, it also provides groundbreaking policy responses founded upon ethics. These effective solutions come from a critical reframing for scientific settings of the unique moral voices of diverse Buddhists from the American ethnographic field, who together delineate sophisticated yet practical values for traveling through our solar system. Along the way, Buddhists fascinatingly supply robust environmental lessons for Earth, too. As much a work of astrobiology as it is one of religious studies, this book should appeal to anyone who is interested in space travel, our human environment in large scale, or spiritual ecology.

Limiting Future Collision Risk to Spacecraft

Limiting Future Collision Risk to Spacecraft
Author: National Research Council
Publisher: National Academies Press
Total Pages: 178
Release: 2011-12-16
Genre: Science
ISBN: 0309219744

Derelict satellites, equipment and other debris orbiting Earth (aka space junk) have been accumulating for many decades and could damage or even possibly destroy satellites and human spacecraft if they collide. During the past 50 years, various National Aeronautics and Space Administration (NASA) communities have contributed significantly to maturing meteoroid and orbital debris (MMOD) programs to their current state. Satellites have been redesigned to protect critical components from MMOD damage by moving critical components from exterior surfaces to deep inside a satellite's structure. Orbits are monitored and altered to minimize the risk of collision with tracked orbital debris. MMOD shielding added to the International Space Station (ISS) protects critical components and astronauts from potentially catastrophic damage that might result from smaller, untracked debris and meteoroid impacts. Limiting Future Collision Risk to Spacecraft: An Assessment of NASA's Meteoroid and Orbital Debris Program examines NASA's efforts to understand the meteoroid and orbital debris environment, identifies what NASA is and is not doing to mitigate the risks posed by this threat, and makes recommendations as to how they can improve their programs. While the report identified many positive aspects of NASA's MMOD programs and efforts including responsible use of resources, it recommends that the agency develop a formal strategic plan that provides the basis for prioritizing the allocation of funds and effort over various MMOD program needs. Other necessary steps include improvements in long-term modeling, better measurements, more regular updates of the debris environmental models, and other actions to better characterize the long-term evolution of the debris environment.