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Remote sensing in the information age   总被引:1,自引:0,他引:1  
Adigun Ade Abiodun   《Space Policy》1998,14(4):229-238
A large percentage of the public today perceives the majority of applications of Earth observation data from satellite and aircraft altitudes to be focused on the understanding and management of the renewable and non-renewable resources of the Earth and its environment. Originally conceived as a tool for gathering intelligence information, remote sensing has just fully emerged from its military womb to the public domain. Advances in the technology, a variety of indirect benefits that could be derived from space exploration, commercialization of remote sensing and the drive of the value-added companies - all of these hold promise for new opportunities for many other novel applications of Earth observation data and related information. In the advent of the more advanced, user-friendly, cost effective, and problem solving operations being championed by the private sector, particularly in the industrialized countries, it appears that the commercial future for remote sensing programmes and related information generated in the process is promising. This paper examines how the information age is influencing the metamorphosis of remote sensing technology particularly through international legal instruments and converging technologies. In spite of the progress attained to-date, of international concern is possible radio frequency interference between remote sensing satellite and communication satellite services. There is also a major knowledge gap between the providers of raw remote sensing data and the user community, particularly those interested in the new high-level information. A resolution of these issues will enhance the contributions of remote sensing to the information economy.  相似文献   
2.
Since the establishment of the United Nations Committee on the Peaceful Exploration and Uses of Outer Space (COPUOS) in 1959, many actions that affect the advancement of the space frontier have been taken, within and outside COPUOS, in the interest of the global community, but without much input from Africa. Yet a number of African countries have joined those with assets in space, albeit without the necessary infrastructure on the ground. These actions vary in scope, in importance and in participation; however, they affect us all. Examples include the legal instruments that are in operation today for the exploration and peaceful uses of outer space, sustainability of the outer space environment and the Global Exploration Strategy– Framework for Coordination (GES–FC), conceived by 14 spacefaring nations; this laid out the details needed for an active global space exploration programme. This paper reflects on existing space-related regional cooperation arrangements at the inter-governmental level, including the African Leadership Conference on Space Science and Technology for Sustainable Development (ALC). Noting that, despite UN General Assembly endorsement of the need for developing countries to have access to the International Space Station (ISS), almost all in Africa have not, it asks what Africa might gain from such an experience. The paper concludes with an examination of where and why Africa needs to focus its immediate space-related efforts – on the ground here on Earth or in outer space?  相似文献   
3.
Through space applications, a number of social and economic programmes in education, communications, agro-climatology, weather forecasting and remote sensing are being realized within the African continent. Regional and international organizations and agencies such as the African Remote Sensing Council, the Pan-African Telecommunication Union and the United Nations system have been instrumental in making Africa conscious of the impact and implications of space science and technology on its peoples.The above notwithstanding, discernible interests in space research, to date, in Africa, have been limited to the work on the solar system and on interplanetary matters including satellite tracking, and to the joint African-Indian proposal for the establishment of an International Institute for Space Sciences and Electronics (INISSE) and the construction, in Kenya, of a Giant Equatorial Radio Telescope (GERT).During this “Transport and Communications Decade in Africa,” Africa's basic space research efforts would need to initially focus on the appropriateness, modification and adaptation of existing technologies for African conditions with a view to providing economic, reliable and functional services for the continent. These should include elements of electronics, communications, structural and tooling industries, and upper-atmosphere research. The experience of and collaborative work with India, Brazil and Argentina, as well as the roles of African scientists, are examined.  相似文献   
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There have been growing national capabilities in the observation of Earth from space and a corresponding increase in the global awareness of environmental problems. In response, within the past decade consensus has been reached with respect to the recommendations of Unispace-82, the Principles of Remote Sensing and Agenda 21 of the June 1992 United Nations Conference on Environment and Development (UNCED); the latter was convened ‘to lay the foundation for a global partnership between developing and more industrialized countries, based on mutual needs and common interests, to ensure the future of the planet’. Similarly, the framework for international cooperation in such programmes as the US-led Earth Observing system (EOS) and the International Geosphere-Biosphere Programme (IGBP) have been established. An international remote sensing system that is user-driven may be the next logical step.  相似文献   
5.
The Composite Infrared Spectrometer (CIRS) is a remote-sensing Fourier Transform Spectrometer (FTS) on the Cassini orbiter that measures thermal radiation over two decades in wavenumber, from 10 to 1400 cm− 1 (1 mm to 7μ m), with a spectral resolution that can be set from 0.5 to 15.5 cm− 1. The far infrared portion of the spectrum (10–600 cm− 1) is measured with a polarizing interferometer having thermopile detectors with a common 4-mrad field of view (FOV). The middle infrared portion is measured with a traditional Michelson interferometer having two focal planes (600–1100 cm− 1, 1100–1400 cm− 1). Each focal plane is composed of a 1× 10 array of HgCdTe detectors, each detector having a 0.3-mrad FOV. CIRS observations will provide three-dimensional maps of temperature, gas composition, and aerosols/condensates of the atmospheres of Titan and Saturn with good vertical and horizontal resolution, from deep in their tropospheres to high in their mesospheres. CIRS’s ability to observe atmospheres in the limb-viewing mode (in addition to nadir) offers the opportunity to provide accurate and highly resolved vertical profiles of these atmospheric variables. The ability to observe with high-spectral resolution should facilitate the identification of new constituents. CIRS will also map the thermal and compositional properties of the surfaces of Saturn’s icy satellites. It will similarly map Saturn’s rings, characterizing their dynamical and spatial structure and constraining theories of their formation and evolution. The combination of broad spectral range, programmable spectral resolution, the small detector fields of view, and an orbiting spacecraft platform will allow CIRS to observe the Saturnian system in the thermal infrared at a level of detail not previously achieved.This revised version was published online in July 2005 with a corrected cover date.  相似文献   
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Many UN agencies use space data as a tool to promote global sustainable development, yet the use of space has barely been acknowledged, let alone understood, by decision makers at the various UN and international meetings on the environment and development. Following discussions held at a side-event to the 2012 Rio+20 conference, the author highlights the various ways space applications can be used to meet the challenges (in resource use, disaster management, environmental protection and climate change) of sustainable development and urges policy makers to inform themselves of the benefits of space applications.  相似文献   
7.
The BOOMERANG (Balloon Observations Of Millimetric Extragalactic RAdiation aNd Geophysics) experiment is an international effort to measure the Cosmic Microwave Background (CMB) anisotropy on angular scales of 20 to 4°, with unprecedented sensitivity, sky and spectral coverage. The telescope will be flown from Antarctica by NASA-NSBF with a long duration stratospheric balloon (7–14 days), and is presently scheduled for flight in 1995–1996. The experiment is designed to produce an image of the Cosmic Microwave Background with high sensitivity and large sky coverage. These data will tightly constrain the baryon density, the reionization history, and the formation of large-scale structure in the universe. BOOMERANG will test technologies and return science data that are essential to the design of a future space-borne mission to map CMB anisotropy.  相似文献   
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