ITU-R M 1039-1-1997 Co-Frequency Sharing between Stations in the Mobile Service Below 1 GHz and FDMA Non-Geostationary-Satellite Orbit (Non-GSO) Mobile Earth Stations《1GHZ频率以下的移动业务.pdf
《ITU-R M 1039-1-1997 Co-Frequency Sharing between Stations in the Mobile Service Below 1 GHz and FDMA Non-Geostationary-Satellite Orbit (Non-GSO) Mobile Earth Stations《1GHZ频率以下的移动业务.pdf》由会员分享,可在线阅读,更多相关《ITU-R M 1039-1-1997 Co-Frequency Sharing between Stations in the Mobile Service Below 1 GHz and FDMA Non-Geostationary-Satellite Orbit (Non-GSO) Mobile Earth Stations《1GHZ频率以下的移动业务.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、STDnITU-R RECMN M-LO39-1-ENGL 1997 4855232 0527444 035 410 Rec. ITU-R M.1039-1 RECOMMENDATION ITU-R M.1039-1 CO-FREQUENCY SHARING BETWEEN STATIONS IN THE MOBILE SERVICE BELOW 1 GE AND FDMA NON-GEOSTATIONARY-SATELLITE ORBIT (NON-GSO) MOBILE EARTH STATIONS (Questions -R 83/8 and -R 84/8) ( 1994- 1997)
2、 Summary In this Recommendation, a statistical calculation method is recommended to be used to evaluate sharing between MESS using FDMA and stations in the mobile service. A dynamic channel assignment technique is described in order to facilitate the sharing. The ITU Radiocommunication Assembly, con
3、sidering a) that the spectrum allocated by the World Administrative Radio Conference for Dealing with Frequency Allocations in Certain Parts of the Spectrum (Malaga-Torremolinos, 1992) (WARC-92) for low-earth orbit (LEO) mobile-satellite services (MSS) below 1 GHz, if shared with mobile services, mu
4、st provide adequate protection from harmful interference; b) large community of travellers. that LEO MSS can provide beneficial radio-based services, including emergency alerting (see Note i), to a NOTE 1 - However, these services will not be identified as safety services as defined by the Radio Reg
5、ulations; c) that the use of LEO enables practical use of frequencies below 1 GHz by space stations; d) 1 GHz can lead to low erlang loading on individual channels; that some coordination and channelisation techniques used in fixed and mobile radio systems in bands below e) sharing between mobile se
6、rvices and low power, low duty cycle mobile-satellite services; that dynamic channel assignment techniques are technically feasible and may provide a means of spectrum f) that the users would operate throughout large geographic areas; g) that the transmission of the MES are short bursts, recommends
7、1 stations in the MSS using FDMA techniques and mobile services in the same frequency band; that the statistical calculation methods described in Annex 1 be used to evaluate sharing between mobile earth 2 that types of dynamic channel assignment techniques such as that described in Annex 2 could be
8、used by non-GSO MSS systems (narrow-band) operating in MSS allocations below 1 GHz in bands to promote compatibility I with terrestrial services. STD-ITU-R RECMN M*1037-L-ENGL 1777 E 4855212 0527Liq5 T51 Rec. ITU-R M.1039-1 411 ANNEX 1 Methods and statistics for determining sharing between MSS earth
9、 station transmitters below 1 GHz and mobile stations 1 Introduction The methods presented in this Annex describe a method to be used to determine if MSS earth station (MES) transmitters can share spectrum with mobile services. The methods described provide a basis for evaluating the effectiveness o
10、f power level limits for MES e.i.r.p. that may be established to allow sharing with mobile services (see Note 1). NOTE 1 -In addition, the uplink transmissions from the MES have an optimum length for sharing with certain terrestrial voice services. It has been indicated this might be up to 500 ms. T
11、he duration of time over which such transmissions would take place is under study (1% in 1-15 min has been suggested). 2 Potential interference from MSS to mobile services Mobile services in the VHF band are typically characterized by frequency modulated voice and data carriers assigned on a periodi
12、c channel grid. Channel spacings used include 12.5 kHz, 15 kHz, 25 kHz and 30 kHz. MSS systems below 1 GHz may use a dynamic channel assignment algorithm which allows the space station to identify those channels not occupied by the mobile stations which are sharing the spectrum. Thus it is expected
13、that there will typically be significant frequency separation (15 kHz or less) between the MSS transmission and the mobile station receiver centre frequency. However, for the purposes of this methodology, the efficiency of the dynamic channel assignment process can not yet be predicted; MSS uplink c
14、hannel selection is therefore assumed to be randomly distributed in 2.5 kiiz (see Note i) steps within the mobile allocation. NOTE 1 - This step size represents practical restrictions on synthesizer implementation with little loss in generality of the analysis. 3 Summary of the methodology Several s
15、teps must be undertaken in order to determine the potential for harmful interference to mobile stations from MES transmitters. The methodology for so doing is outlined in this section. Detailed descriptions of each step are contained in the following sections. 3.1 Coordination contour The first step
16、 is to determine a typical coordination contour around a mobile receiver to be protected. This is described by the range at which an MES transmitter or group of transmitters will produce a pfd in excess of a level determined to be a protection criteria. To perform this calculation one must know the
17、following values: e.i.r.p.,- : maximum e.i.r.p. of the MES (W) B W, : signal bandwidth of the MES transmitter (Hz) Pfdt : PFD considered to be harmful (W/m2) N, : expected maximum simultaneous MES transmitters L(d) : propagation loss as a function of distance. If it can be determined that the coordi
18、nation contour is small enough as compared to the expected movements of mobile stations and MESS, then no further calculations are required. If the coordination contour is too large for this determination to be made, the following steps must be executed. STDWITU-R RECMN R-LO37-1-ENGL 1777 4855212 05
19、2744b 778 412 Rec. ITU-R M.1039-1 3.2 Calculation of threshold exceedance Probability Probabilistic techniques are used to determine the percentage of time that the protection pfd will be exceeded at a particular mobile station receiver. If this “exceedance probability” is low enough, exceeding the
20、protection level is not considered to be harmful interference. 3.2.1 Geographic area for the calculation The first step is to determine an area over which transmissions from MESS will contribute significantly to the statistics of received pfd at the mobile receiver. If too large an area is used, the
21、 subsequently calculated exceedance probability is likely to be understated. This area is typically described by a radius corresponding to the protection contour described above. 3.2.2 Single transmitter pfd probability density function Given an area over which the calculation is to be performed, on
22、e then calculates a discrete probability density function (see Note 1) for the expected values of pfd at a mobile receiver. This is a two-step process, beginning with theestablishment of a random variable describing the probability distribution of MES to mobile receiver range. The probability of a p
23、articular pfd is then evaluated as that associated with the range which, in combinations with the MES e.i.r.p., propagation model and potential filter isolation, produces that pfd. NOTE 1 - The probability density function (PDF) for a random variable defines the probability weight for each of the va
24、lues that the random variable can take on. The integral of the probability density function is unity. If one constructs a new function for each of the values that the random variable can take on by integrating the probability density function from minus infinity to that random variable value, one ha
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ITURM103911997COFREQUENCYSHARINGBETWEENSTATIONSINTHEMOBILESERVICEBELOW1GHZANDFDMANONGEOSTATIONARYSATELLITEORBITNONGSOMOBILEEARTHSTATIONS1GHZ

链接地址:http://www.mydoc123.com/p-791529.html