ITU-R F 1337-1997 Frequency Management of Adaptive HF Radio Systems and Networks Using FMCW Oblique-Incidence Sounding《使用FMCW斜入射探测的自适应高频无线电系统和网络的频率配置》.pdf
《ITU-R F 1337-1997 Frequency Management of Adaptive HF Radio Systems and Networks Using FMCW Oblique-Incidence Sounding《使用FMCW斜入射探测的自适应高频无线电系统和网络的频率配置》.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 1337-1997 Frequency Management of Adaptive HF Radio Systems and Networks Using FMCW Oblique-Incidence Sounding《使用FMCW斜入射探测的自适应高频无线电系统和网络的频率配置》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Rec. ITU-R F.1337 1RECOMMENDATION ITU-R F.1337*FREQUENCY MANAGEMENT OF ADAPTIVEHF RADIO SYSTEMS AND NETWORKS USING FMCWOBLIQUE-INCIDENCE SOUNDING(Question ITU-R 205/9)(1997)Rec. ITU-R F.1337The ITU Radiocommunication Assembly,consideringa) the need for highly reliable HF communication services;b) th
2、e limited amount of HF spectrum available for transmission of voice and data;c) the constraints of the time-varying ionosphere, which limits the number of usable channels within the availablespectrum;d) that effective and efficient regulatory and frequency management techniques are essential to opti
3、mize use ofthe frequencies for fixed and some mobile services between 1.6 and 28 MHz;e) that experimental studies, as outlined in the Annex 1, have shown that substantial improvements in channelutilization can be achieved through the use of frequency and path diversity;f) that frequency modulated co
4、ntinuous wave (FMCW) oblique incident sounding schemes can provide anaccurate real-time assessment of the HF channels available to a network thereby forming the basis of dynamic frequencymanagement;g) that the FMCW “chirp” sounding method can be engineered to limit harmful interference, and can beim
5、plemented as an external process thereby eliminating reductions in system capacity,recommends1 that automatic and adaptive management schemes be considered for adaptive HF networks to include dynamicselection of optimum frequencies, the sharing of frequencies within a network, and adaptive selection
6、 of alternatenetwork paths;2 that FMCW “chirp” sounding be considered for use in dynamic frequency management schemes including: as a real-time input data source for updating resource management and propagation prediction programmes; as a means for updating the frequency scan lists of adaptive HF sy
7、stems; for modification and enhancement of the link quality analysis (LQA) matrices for adaptive HF systems; as a complement to the exclusive use of in-band channel sounding, thereby increasing network communicationcapacity and reducing interference introduced by channel sounding;3 that for adaptive
8、 HF networks in the fixed and mobile services, the information contained in the Annex 1 beconsidered for general spectral planning and in the design of network topologies;4 that further studies are required to evaluate the advantages of sounding technology for frequency managementof regional and glo
9、bal adaptive HF networks, emphasizing high latitude and equatorial regions during solar maximumconditions._*This Recommendation should be brought to the attention of Radiocommunication Study Groups 1 and 8.2 Rec. ITU-R F.1337ANNEX 1Long-term investigation of oblique incidence FMCW sounding as a meth
10、od fordynamic frequency management of HF communication networks1 IntroductionFMCW swept-frequency sounding has been used within centralized spectrum management networks to provide real-timechannel evaluation (RTCE) for multiple HF circuits. Often referred to as “chirp” sounders, these devices provid
11、e thebenefits associated with oblique incidence sounding, i.e. for use in the optimization of frequency utilization, improve-ment in circuit reliability, evaluation of signal-to-noise and interference ratios, and the measurement of ionosphericpropagation parameters used by some adaptive HF systems.
12、When linked to centralized spectrum management networks,these sounders can be operated in limited numbers on an intermittent, low-power basis, obtaining real-time spectrummanagement information for multiple users. This method decreases the need for sounding in general and also limits thetotal time t
13、hat a sounder will operate co-channel with other HF transmitters. The net result is improved information tomultiple users and a decrease in interference potential due to sounding.2 System conceptWithin centralized spectrum management networks, FMCW swept-frequency sounding information can be used to
14、produce presentations, called ionograms, of received signal time delay versus frequency of transmission. Because theionospheric channel may be comprised of multiple layers and scattering centres supporting HF communication, receivedsignals at a given frequency will experience varying amounts of time
15、 delay distortion. Traces on the ionogram record areindicative of various ionospheric propagation modes which will support communication.Ionograms are derived by processing a low power FMCW signal over a selectable frequency range, typically 2-30 MHz.The quality of these “chirp” ionograms is superio
16、r to those derived from pulse sounders for the same averagepower because the former employs a spread spectrum waveform characterized by processing gain which is appliedagainst narrow-band interference effects. The nominal average power (and peak envelope power (PEP) of these systemsis 10-100 W or po
17、ssibly less depending upon the circumstances.FMCW sounding also reduces the amount of time when any particular frequency is occupied. The nominal rate atwhich these sounders sweep through the 2-30 MHz band is 100 kHz/s. Consequently, the entire HF band is sampledin about 5 min. The temporal separati
18、on between successive sweeps for a given transmitter, called the scan interval,is typically 15 min, but may be set at 30 min or longer. Therefore, the FMCW swept frequency transmitter not only usesmodest power, but it has a momentary effect on other HF users within each scan, and the scan interval i
19、s relatively long.If a co-channel user is within the coverage pattern of the FMCW sounder, a typical 3 kHz channel may experiencea 30 ms blip no more than twice an hour if the scan interval is 30 min.When used within a centralized spectrum management network, the number of sounders can be limited wh
20、ile providingregional or worldwide coverage to a large number of users. This process eliminates the need for individual HF operatorsto perform their own sounding thereby decreasing the total amount of sounding needed to support a number of users.Channel sounding by individual transmitters, though pr
21、oviding useful information, can add to the congestion of the HFfrequency range. FMCW swept-frequency sounding used in conjunction with centralized spectrum managementnetworks can greatly decrease the potential for interference due to sounding.3 Experimental implications of relevance to the Recommend
22、ationMany experiments have been conducted over the years using FMCW swept-frequency oblique incidence sounders. Anextensive experimental program of the potential of frequency and path diversity was conducted between 1993 and 1996,a period of low solar activity. The program was conducted using ten si
23、tes in the Northern hemisphere. Figure 1 providesRec. ITU-R F.1337 3the geometry. The investigation was directed toward resolving problems associated with adaptive HF communicationsystems with special emphasis on automatic digital data communication. Other issues of concern included those of radiopr
24、opagation, frequency management, and system architecture. Paths that were examined have provided informationrelated to circuits within the polar cap, auroral zone, high-latitude trough, as well as mid-latitude channel environments.1337-0180 N70 N60 N50 N40 N30 N20 N10 N010 S20 S3 5704 6004 06024801
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