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1.
Current and planned developments in the field of civilian and commercial2 satellite imagery promise a major expansion in international accessibility to remote sensing data and technologies. This paper addresses the implications of the expanding global access to land remote sensing data and their derived products. While atmospheric, meteorological, and oceanographic data is also widely available at cost or free of charge, it is land remote sensing – specifically the unique systems with high-resolution and frequent revisit times – that are of primary concern for international and regional security issues. Military and intelligence satellites are not addressed in this discussion of expansion due to their inherently controlled access, unless such systems also provide commercially available imagery or products (as is the case with some Russian systems).  相似文献   

2.
There is a growing realisation of the increasingly varied and interesting possibilities for the use of Earth observation data to ensure compliance with international obligations generally, and treaty obligations in particular. Most examinations of the application of Earth observation data to monitoring states’ compliance with international obligations focus on the environmental sector. This paper proposes the use of remote sensing satellites for the support of multilateral environmental agreements (MEAs), especially land monitoring MEAs such as the Convention on Biological Diversity (1992) and the Kyoto Protocol (1997). It discusses the uses of remote sensing for treaty implementation or enforcement in general, and the admissability of satellite imagery as legal proof, before examining how Earth observation-derived data could be of benefit to specific MEAs. As sensors become increasingly sophisticated the use of remote sensing in this area should grow but it needs to be supported by its more widespread legal recognition as proof.  相似文献   

3.
Remote-sensing technology developments will influence the flow and requirements of remote-sensing data until the end of this century. Sensing-upon-request modes of operation are becoming regular practice and, in combination with commercial sales, are leading to contracts in which copyright clauses and other conditions influence the distribution of remote-sensing data. Moreover, the introduction of programmable and directable sensor systems is making it easier to gather more data over certain areas at the cost of less or none over others, leading to potential indirect censorship. The development of a media market for remote-sensing products also brings a threat of actual censorship on the release and use of imagery. The effects of the technology developments and commercialization policies require a careful consideration of whether or not the present international remote-sensing regime, as governed by the UN principles relating to remote sensing of the Earth from space, can continue unmodified in future.  相似文献   

4.
Super View-1 satellite constellation(Super View-1 for short) is the first commercial remote sensing constellation with a resolution down to 0.5 m. It's an important part of the national spatial information infrastructure construction. It will play an important role for the global users providing remote sensing data, application solutions and remote sensing value-added services with its high-resolution and 24-hour observation capability. At present, 4 satellites of the constellation have been successfully launched and networked on orbit. The services cover surveying and mapping, land resource surveying, urban planning, agriculture, forestry, water conservancy, geological mining, environmental monitoring, defense, disaster reduction along with other traditional industries. There are also great potential applications in Mobile Internet, LBS, Smart city, insurance and other emerging professions. The successful operation of Super View-1 breaks the overseas monopoly for commercial high-resolution remote sensing satellite imagery in the China market. It's one of the major achievements in China space science and technology by actively exploring the development of commercial remote sensing markets, which is of strategic significance to the development of China remote sensing satellite business.  相似文献   

5.
Remote sensing scientists work under assumptions that should not be taken for granted and should, therefore, be challenged. These assumptions include the following:1. Space, especially Low Earth Orbit (LEO), will always be available to governmental and commercial space entities that launch Earth remote sensing missions.2. Space launches are benign with respect to environmental impacts.3. Minimization of Type 1 error, which provides increased confidence in the experimental outcome, is the best way to assess the significance of environmental change.4. Large-area remote sensing investigations, i.e. national, continental, global studies, are best done from space.5. National space missions should trump international, cooperative space missions to ensure national control and distribution of the data products.At best, all of these points are arguable, and in some cases, they're wrong. Development of observational space systems that are compatible with sustainability principles should be a primary concern when Earth remote sensing space systems are envisioned, designed, and launched. The discussion is based on the hypothesis that reducing the environmental impacts of the data acquisition step, which is at the very beginning of the information stream leading to decision and action, will enhance coherence in the information stream and strengthen the capacity of measurement processes to meet their stated functional goal, i.e. sustainable management of Earth resources. We suggest that unconventional points of view should be adopted and when appropriate, remedial measures considered that could help to reduce the environmental footprint of space remote sensing and of Earth observation and monitoring systems in general. This article discusses these five assumptions in the context of sustainable management of Earth's resources. Taking each assumption in turn, we find the following:(1) Space debris may limit access to Low Earth Orbit over the next decades.(2) Relatively speaking, given that they're rare event, space launches may be benign, but study is merited on upper stratospheric and exospheric layers given the chemical activity associated with rocket combustion by-products.(3) Minimization of Type II error should be considered in situations where minimization of Type I error greatly hampers or precludes our ability to correct the environmental condition being studied.(4) In certain situations, airborne collects may be less expensive and more environmentally benign, and comparative studies should be done to determine which path is wisest.(5) International cooperation and data sharing will reduce instrument and launch costs and mission redundancy. Given fiscal concerns of most of the major space agencies – e.g. NASA, ESA, CNES – it seems prudent to combine resources.  相似文献   

6.
Activities concerning international cooperation in space-based remote sensing for global change research have for the most part focused on technical/functional aspects such as data harmonization, research project coordination, and sensor selection and deployment. Until fairly recently, little attention has been directed towards the various political and economic constraints which may act as ‘stumbling blocks’. A review of the contemporary international remote sensing milieu as it relates to the global change research agenda is presented. Several important political and economic conditions affecting this area are identified: (1) data access and pricing policies; (2) national security concerns; (3) developed/developing nation relations; and (4) inconsistent political/financial commitments. A set of recommendations is offered to enhance international cooperation in the use of space-based remote sensing data for global change research.  相似文献   

7.
Technological advances in remote sensing capabilities, wider participation of commercial firms and the possibilities of ‘processing’ spatial data to create value-added information have given rise to a range of policy and legal issues in the geographic information (GI) field. How far satellite images can still be considered a ‘public good’, conflicts between commercial and national interests is becoming a major issue, especially where security is concerned, sovereignty and the rights of sensed states, shutter control vs transparency is debated, data access, IPR and infringement of privacy becoming more relevant are all discussed. At the same time, the societal and public good of GI is well accepted with innumerable national and international examples. It is clear that societies would greatly benefit from the proper use of GI. A multilateral debate to formulate a GI policy that will take account of these while ensuring that the full benefits of remote sensing are available to society is called for.  相似文献   

8.
This paper discusses whether current international and national regulation of remote sensing activities achieves a true balance between proprietary interests of producers of remote sensing data and information and the needs of the community in accessing that data and information. By subjecting remote sensing data to general copyright restrictions that are often coupled with exclusive licences, irrespective of type or use of data and/or information, the development of important secondary information markets could be negatively hampered. In the long run, over-regulating access to space data may prove counter-productive in the information age. Using examples of different modes of information dissemination currently being practised, the paper highlights the balances to be drawn between legal issues of private ownership of data and information and public good interests. It concludes with suggestions for a more coherent regulatory approach.  相似文献   

9.
Satellite land remotely sensed data are used by scientists and resource managers world-wide to study similar multidisciplinary earth science problems. Most of their information requirements can be met by a small number of satellite sensor types. Moderate-resolution resource satellites and low-resolution environmental satellites are the most prominent of these, and they are the focus of this paper. Building, launching, and operating satellite systems are very expensive endeavors. Consequently, nations should change the current pattern of independently launching and operating similar, largely redundant resource and environmental satellite systems in favor of true and full collaboration in developing, launching, operating, and sharing the data from such systems of the future. The past decade has seen encouraging signs of increasing international collaboration in earth remote sensing, but full collaboration has not yet been attempted. A general strategy to achieve such international collaboration is presented here, including discussion of potential obstacles, ideas for organizing and overseeing the long-term process toward collaboration, and short-term objectives whereby early successes critical to accomplishing long-term goals can be achieved.  相似文献   

10.
Based on international requirements for the application of commercial remote sensing data,an information service system for receiving and processing multi source remote sensing data was developed and introduced.The system consists of an Oversea Fixed Ground Service Station(OFGS),a Transportable Vessel-Borne Service Station(TVBS) and a Data Operation and Management Center(DOMC).Fixed and transportable service stations were developed in Venezuela,Latin America and for the China's Xuelong polar research vessel respectively,and serve the function of remote sensing data receiving,processing and application.The DOMC connects the OFGS and TVBS,so that they constitute a network to provide receiving,distribution,retrieval,browsing,ordering,and downloading functions for multi remote sensing satellite data and products.It validates the competence in providing 40 kinds of typical application products.The development of this system provides a reliable and comprehensive service for commercial remote sensing data applications for users both in domestic and oversea markets.  相似文献   

11.
With the rapid advancement in remote sensing technology and corresponding applications, the Earth Observation Ground Segment has undergone a significant change at NRSA. From dedicated data acquisition and processing systems, we have realized multi-mission data acquisition quick look and browse systems and also multi-mission integrated information management systems. Front end of data reception station has been upgraded to handle wider bandwidth and data rates up to 320 Mbps for near future missions such as the Radar Imaging Satellite (RISAT). Antenna, feed, down converters and RF chain have been upgraded. To cater to multi-mission scenario mission independent, fully configurable demodulator/bit synchs have been deployed. For handling data acquisition in multi-satellite scenario where in data from 5 to 6 remote sensing satellites are to be received almost simultaneously, automation of operations has been incorporated towards station configuration to avoid manual errors. From media-based data handling, there has been a shift towards net centric data handling among the various work centers such as user order processing, data processing systems, special processing systems, data quality evaluation, and product quality control work centers. The turn around time for dissemination of user desired data products has been improved from two weeks to one day. Presently a state of the art integrated environment has been envisaged which will bring down the turn around time for the supply of data products significantly. Automation has been incorporated at both data acquisition and data processing to improve the product throughput. Presently NRSA is catering to a demand of about 30,000 data products per annum and in the next two years it is aimed to reach a level of 50,000 products per annum by realizing the integrated multi-mission ground system for earth observation (IMGEOS). This will significantly modify the entire data production and dissemination chain so that data can be made available to user within 1 h from data acquisition at Shadnagar in some cases. Some of these novel developments planned in the near future will be discussed in this paper.  相似文献   

12.
目前卫星影像的区域网平差技术已经有了初步的发展,但大多数研究都基于国际高分辨率卫星影像,针对大区域范围内的中国卫星影像的快速平差还鲜有提及。文章以“资源三号”卫星正视影像为数据源,配合高分辨率的控制点影像和数字高程模型(DEM)数据,基于RPC(rational polynomial coefficients)模型参数精确解算和一种新的控制点选取策略对大区域范围内仅使用少量控制点的区域网平差进行了研究与试验。在试验过程中,文章采用地形坡度统计的方法来快速获取多景影像中控制点的优先选取区域,缩小控制点选取范围。除此之外,文章还通过添加选取相对较为容易的连接点替代部分控制点来保证影像平差精度。结果表明:采用文中方法能大量减少控制点选取难度并有效提高中国遥感影像的几何定位精度,真正实现数字正射影像(DOM)产品的快速生产。  相似文献   

13.
Earth observation data have been acquired and stored since the early 1970 s. One of the world's largest, and most important, repositories for land satellite data is the Earth Resources Observation Systems (EROS) Data Center (EDC). It is a data management, systems development and research field center for the US Geological Survey's (USGS) National Mapping Division in Sioux Falls, SD, USA. It was established in the early 1970 s and, in 1992, the US Congress established the National Satellite Land Remote Sensing Data Archive at EDC. Although data have been acquired and stored for decades, the world's remote sensing community has only recently begun to address long-term data preservation and access. One such effort was made recently by remote sensing leaders from academia, industry and government as members of a federal advisory committee from 1998 to 2000.2 This paper provides a brief account of the Committee's work product.  相似文献   

14.
概述了城乡规划动态监测对卫星遥感数据的要求,说明了卫星遥感影像数据应用于城乡规划动态监测的技术原理、工作流程及工作任务。以相关监测城市为例,阐述了2009-2010年我国36个城市建设用地规模、城市四线强制性内容等变化情况。监测成果说明,应用卫星遥感数据是城乡规划动态监测的有效手段。  相似文献   

15.
杂散光是影响卫星光学遥感图像像质的重要因素,严重时会在图像上形成明暗的杂散光条纹噪声,降低图像的对比度和清晰度。文章针对“实践九号”A(SJ-9A)卫星光学遥感图像存在的杂散光噪声现象,设计了一种基于成像载荷焦面入射杂散光空间分布特征的遥感图像杂散光条纹噪声去除方法,通过测量杂散光在推扫遥感图像上的空间分布特征,建立杂散光分布特征模型,采用分块自适应算法进行杂散光噪声滤波,消除SJ-9A遥感图像上随时空变化的杂散光条纹噪声。杂散光噪声去除后图像整体色调均匀,无条带噪声,满足CCD/TDI-CCD推扫遥感图像辐射校正精度(广义噪声)优于5%的指标要求。  相似文献   

16.
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   

17.
多光谱图像波段配准精度是多光谱影像数据的一项重要指标。文章实现了一种基于相位一致特征的多光谱图像亚像元波段配准精度自动评价方法。通过对CBERS-02B卫星CCD多光谱图像波段配准精度自动评价,表明该方法对于亮度和对比度具有不变性,能均匀稳定提取多光谱数据不同波段影像大量同名特征匹配点,自动给出影像的不同区域的亚像元配准精度,实现对整景影像数据的较为完整准确评价。根据评价结果进行了地面处理系统校正,使行列方向除局部区域外均达到配准精度。  相似文献   

18.
This paper examines the use of remote sensing satellites for verification in public international law. Verification always depends on the specific agreement or mission to be verified. There are no general framework rules: the means of verification and the verifying authorities vary from agreement to agreement and from mission to mission. Rapid technological development and the intensifying international cooperation have led to an increasing number of international verification missions. Whereas, in the past, verification was at the heart of intelligence and national services, the commercialization of the remote sensing industry and the information revolution have supported the creation of joint initiatives in this field. Traditionally, verification is associated with disarmament and arms control treaties, but the paper will underline that this is only one field of application for verification missions. It is important to note that there is no binding international regime specifically addressing such activity. The lack of legal certainty in this field also applies to the use of remotely sensed data as evidence in legal proceedings.  相似文献   

19.
CBERS-02B卫星HR相机遥感影像区域网平差技术   总被引:1,自引:0,他引:1  
针对CBERS-02B卫星HR相机遥感影像的几何定位精度不高,不能满足有些用户的要求,提出了基于有理多项式(Rational Polynomial Coefficient,RPC)模型的区域网平差技术,并利用多幅CBERS-02B卫星HR相机遥感影像进行了区域网平差试验,结果表明该方法能有效地提高遥感影像的几何定位精度...  相似文献   

20.
Major technical advances in remote sensing have developed sophisticated systems with both extensive military and civilian applications. Not only the USA and USSR, but a growing number of other countries such as China, France, India and Japan are actively engaged in remote-sensing R&D. This article reviews the capabilities of civilian satellite technologies and programmes of various nations, and examines the implications for national and international security. Many states are concerned about the commercial availability of data on their economic resources and national security-related activities. A particular problem is the possible misinterpretation of remotely-sensed data.  相似文献   

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