ITU-R RS 2043-0-2014 Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHz《运行在地球勘探卫星服务站(有源)约9600 MHz频段的合成孔径雷达的.pdf
《ITU-R RS 2043-0-2014 Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHz《运行在地球勘探卫星服务站(有源)约9600 MHz频段的合成孔径雷达的.pdf》由会员分享,可在线阅读,更多相关《ITU-R RS 2043-0-2014 Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHz《运行在地球勘探卫星服务站(有源)约9600 MHz频段的合成孔径雷达的.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、 Recommendation ITU-R RS.2043-0(02/2014)Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHzRS SeriesRemote sensing systemsii Rec. ITU-R RS.2043-0 Foreword The role of the Radiocommunication Sector is to ensure the rational, equi
2、table, efficient and economical use of the radio-frequency spectrum by all radiocommunication services, including satellite services, and carry out studies without limit of frequency range on the basis of which Recommendations are adopted. The regulatory and policy functions of the Radiocommunicatio
3、n Sector are performed by World and Regional Radiocommunication Conferences and Radiocommunication Assemblies supported by Study Groups. Policy on Intellectual Property Right (IPR) ITU-R policy on IPR is described in the Common Patent Policy for ITU-T/ITU-R/ISO/IEC referenced in Annex 1 of Resolutio
4、n ITU-R 1. Forms to be used for the submission of patent statements and licensing declarations by patent holders are available from http:/www.itu.int/ITU-R/go/patents/en where the Guidelines for Implementation of the Common Patent Policy for ITU-T/ITU-R/ISO/IEC and the ITU-R patent information datab
5、ase can also be found. Series of ITU-R Recommendations (Also available online at http:/www.itu.int/publ/R-REC/en) Series Title BO Satellite delivery BR Recording for production, archival and play-out; film for television BS Broadcasting service (sound) BT Broadcasting service (television) F Fixed se
6、rvice M Mobile, radiodetermination, amateur and related satellite services P Radiowave propagation RA Radio astronomy RS Remote sensing systems S Fixed-satellite service SA Space applications and meteorology SF Frequency sharing and coordination between fixed-satellite and fixed service systems SM S
7、pectrum management SNG Satellite news gathering TF Time signals and frequency standards emissions V Vocabulary and related subjects Note: This ITU-R Recommendation was approved in English under the procedure detailed in Resolution ITU-R 1. Electronic Publication Geneva, 2014 ITU 2014 All rights rese
8、rved. No part of this publication may be reproduced, by any means whatsoever, without written permission of ITU. Rec. ITU-R RS.2043 1 RECOMMENDATION ITU-R RS.2043-0 Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHz (2014) Scop
9、e This Recommendation provides characteristics for synthetic aperture radars operating in the Earth exploration-satellite service (active) allocated around 9 600 MHz. This information should enable sharing and compatibility studies with other radio services coexisting in the same frequency range or
10、nearby frequency ranges. The use of this frequency range comprises remote sensing satellite systems that are implemented with different radar transmission bandwidths ranging from 100 MHz up to 1 200 MHz. The ITU Radiocommunication Assembly, considering a) that spaceborne active microwave remote sens
11、ing requires specific frequency ranges depending on the physical phenomena to be observed; b) that certain frequency bands have been allocated for spaceborne active microwave remote sensing; c) that the transmission bandwidth of a radar sensor is directly related to the achievable measurement resolu
12、tion; d) that a growing demand for high-resolution radar information exists as shown in Report ITU-R RS.2274; e) that observations in the 9 GHz frequency range provide data critical to the study of the characteristics of the Earth and its natural phenomena, including data relating to the state of th
13、e environment; f) that only the 9 600 MHz frequency range offers the most advantageous situation of highest possible bandwidth in a frequency band which offers good propagation conditions, recognizing that Recommendation ITU-R RS.1166 provides performance and interference criteria for Earth explorat
14、ion-satellite service (active) sensors including synthetic aperture radars operating around 9 600 MHz, recommends that the characteristics of typical space-borne synthetic aperture radar systems operating in the 9 GHz range, as described in the Annex, should be used for sharing and compatibility stu
15、dies involving the Earth exploration-satellite service (active) around 9 600 MHz. 2 Rec. ITU-R RS.2043-0 Annex Characteristics of synthetic aperture radars operating in the Earth exploration-satellite service (active) around 9 600 MHz 1 Principles of synthetic aperture radars (SAR) A synthetic apert
16、ure radar (SAR) is a coherent spaceborne side-looking radar system which utilizes a satellites flight path to emulate an extremely large antenna or aperture electronically, and that generates high-resolution remote sensing imagery. In principle, a SAR is an active phased array antenna. But instead o
17、f using a large number of parallel antenna elements, SAR uses one antenna element in time-multiplex. The different geometric positions of the antenna elements are the results of the moving platform. The satellite travels forward in the flight direction with a nadir pointing towards the centre of the
18、 Earth. The microwave beam is transmitted obliquely at right angles to the flight direction illuminating a swath. Range refers to the across-track dimension perpendicular to the flight direction, while azimuth refers to the along-track dimension parallel to the flight direction. Swath width refers t
19、o the strip of the Earths surface from which data is collected as a side-looking radar. It is the width of the imaged scene in the range dimension. The longitudinal extent of the swath is defined by the motion of the aircraft with respect to the surface, whereas the swath width is measured perpendic
20、ularly to the longitudinal extent of the swath. Over time, individual transmit/receive cycles (pulse repetition time, (PRT) are completed and the gathered data from each cycle is stored in on-board memory. The signal processing uses the magnitude and phase of the received signals over successive pul
21、ses from elements of a synthetic aperture. After a given number of cycles, the stored data is recombined to create a high resolution image of the terrain being overflown. 2 Modes of operation of synthetic aperture radars (SAR) 2.1 Geometry The SARs operating near 9.6 GHz are controlled via a ground
22、command to turn on and off as required to view only specific areas on the Earth. From all SAR modes shown in Fig. 1, the full 1 200 MHz chirp bandwidth is only intended for use when operating in spotlight mode. Other modes may use the frequency band 9 300-9 900 MHz, in accordance with provisions giv
23、en by RR footnotes Nos. 5.475A, 5.476A, 5.478A and 5.478B. The conventional SAR strip map mode assumes a fixed pointing direction of the radar antenna broadside to the platform track. A strip map is an image formed in width by the swath of the SAR and follows the length contour of the flight line of
24、 the platform itself. In the scanSAR mode, the SAR can illuminate several sub-swaths by scanning its antenna into different positions. Rec. ITU-R RS.2043 3 FIGURE 1 Modes of operations for SAR system in the 9 GHz Earth exploration-satellite service (EESS) allocation RS.2043-01555520Spotlight modeStr
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