ITU-R M 1874-1-2012 Technical and operational characteristics of oceanographic radars operating in sub-bands within the frequency range 3-50 MHz《海洋雷达的操作在子带内的3-50 MHz频率范围的技术和操作特性》.pdf
《ITU-R M 1874-1-2012 Technical and operational characteristics of oceanographic radars operating in sub-bands within the frequency range 3-50 MHz《海洋雷达的操作在子带内的3-50 MHz频率范围的技术和操作特性》.pdf》由会员分享,可在线阅读,更多相关《ITU-R M 1874-1-2012 Technical and operational characteristics of oceanographic radars operating in sub-bands within the frequency range 3-50 MHz《海洋雷达的操作在子带内的3-50 MHz频率范围的技术和操作特性》.pdf(24页珍藏版)》请在麦多课文档分享上搜索。
1、 Recommendation ITU-R M.1874-1(02/2013)Technical and operational characteristicsof oceanographic radars operating in sub-bands within the frequency range 3-50 MHzM SeriesMobile, radiodetermination, amateurand related satellite servicesii Rec. ITU-R M.1874-1 Foreword The role of the Radiocommunicatio
2、n Sector is to ensure the rational, equitable, 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 p
3、olicy functions of the Radiocommunication 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/IS
4、O/IEC referenced in Annex 1 of Resolution 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/IE
5、C and the ITU-R patent information database 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 Broa
6、dcasting service (television) F Fixed service 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-
7、satellite and fixed service systems SM Spectrum 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 Publicati
8、on Geneva, 2013 ITU 2013 All rights reserved. No part of this publication may be reproduced, by any means whatsoever, without written permission of ITU. Rec. ITU-R M.1874-1 1 RECOMMENDATION ITU-R M.1874-1 Technical and operational characteristics of oceanographic radars operating in sub-bands within
9、 the frequency range 3-50 MHz (Question ITU-R 240/5) (2009-2010-2013) Scope This Recommendation provides technical and operational characteristics of oceanographic radars for use in sharing and compatibility studies and spectrum planning and systems deployment within the 3 to 50 MHz band. It provide
10、s the relevant characteristics of short-range, standard range, long-range, very-long range and high-resolution oceanographic measurement systems. The ITU Radiocommunication Assembly, considering a) that there is a need to operate oceanographic radar systems in the radiodetermination1service, using s
11、pectrum in the 3 to 50 MHz frequency range; b) that WRC-12 allocated a number of frequency bands between 3 and 50 MHz for operation of these radars; c) there is global interest in deploying operational systems on a worldwide basis; d) that performance, functions and data requirements normally determ
12、ine the range of spectrum that can be used by ocean observing radar systems, recognizing that representative technical and operational characteristics of oceanographic radar systems are required for spectrum management and deployment planning, recommends 1 that the technical and operational aspects
13、of oceanographic radars contained in the Annex should be considered when conducting sharing and compatibility studies with systems in other services; 2 that the technical and operational aspects of oceanographic radars contained in the Annex should also be taken into consideration for planning purpo
14、ses. 1The radiolocation and radionavigation services are sub-services of the radiodetermination service. 2 Rec. ITU-R M.1874-1 Annex Technical and operational characteristics of oceanographic radars operating in sub-bands within the frequency range 3-50 MHz 1 Introduction A significant percentage of
15、 the worlds population lives within 50 miles of the coastline heightening the need for accurate, reliable and detailed measurements of coastal environmental variables. Just as the winds in the atmosphere provide information about where and when weather systems occur, ocean currents determine the mov
16、ement of oceanic events. These two dynamic flows are used to determine where pollutants, man-made or natural, will travel. Presently, ocean current measurements are not as readily available as winds. Because of this, there is an increasing interest in the ability to accurately measure the currents a
17、nd waves in coastal waters. Radar systems operating at frequencies higher than 50 MHz are limited in their ability to provide data meeting current range, accuracy and resolution requirements. The global oceanography community is planning for the implementation of coastal sea surface monitoring radar
18、 networks. The benefits to society for improved measurement of coastal currents and sea state include a better understanding of issues like coastal pollution, fisheries management, search and rescue, beach erosion, maritime navigation, sediment transport and tsunami and associated surface wave reson
19、ance response (see the Appendix). Coastal radar measurements of the sea surface provide support to meteorological operations through the collection of sea state and dominant ocean wave data. In addition, oceanographic radar technology has applications in global maritime domain awareness by allowing
20、the long range sensing of surface vessels. This will benefit the global safety and security of shipping and ports2. The need for additional data to mitigate the effects of disasters, including tsunamis, to understand climate change, and to ensure safe maritime travel has led to the consideration of
21、operational use of oceanographic radar networks on a global basis. Implementation of these systems in Japan is shown in Figs 1 and 2. 2 Use of Coastal Ocean Dynamics Application Radar (CODAR) Technology in the United States of America Coast Guard Search and Rescue Planning, David Ullman; James ODonn
22、ell; Christopher Edwards; Todd Fake; David Morschauser; Coast Guard Research and Development Center Groton CT. Rec. ITU-R M.1874-1 3 FIGURE 1 An example of the observed surface current by oceanographic radars in the Tokyo Bay Watch System operated by Ministry of Land, Infrastructure, Transport and T
23、ourism, Japan M.1874-01FIGURE 2 Oceanographic radars in Japan (observation areas are shown for each fixed radar site) M.1874-02Soya warm currentOyashio currentTsushima warm currentKuroshio current4 Rec. ITU-R M.1874-1 As of 2009, 143 oceanographic radars spread unevenly throughout the United States
24、of America coastal regions (this total includes radars that are not currently operating on a regular basis). Nearly all of the oceanographic radar systems in the United States of America are owned and operated by university research departments. Existing and proposed oceanographic radar sites for th
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