ITU-R M 1032-1994 Technical and Operational Characteristics of Land Mobile Systems Using Multi-Channel Access Techniques without a Central Controller《使用多渠道进程技术而不受中央控制的大陆移动系统的技术和操作特.pdf
《ITU-R M 1032-1994 Technical and Operational Characteristics of Land Mobile Systems Using Multi-Channel Access Techniques without a Central Controller《使用多渠道进程技术而不受中央控制的大陆移动系统的技术和操作特.pdf》由会员分享,可在线阅读,更多相关《ITU-R M 1032-1994 Technical and Operational Characteristics of Land Mobile Systems Using Multi-Channel Access Techniques without a Central Controller《使用多渠道进程技术而不受中央控制的大陆移动系统的技术和操作特.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、- = 4855232 0523233 33b 68 Rw. ITU-R M.1032 RECOMMENDATION ITU-R M.1032 TECHNICAL AND OPERATIONAL CHARACTERISTICS OF LAND MOBILE SYSTEMS USING MULTI-CHANNEL ACCESS TECHNIQUES WITHOUT A CENTRAL CONTROLLER (Question ITU-R 71/8) ( 1994) The ITU Radiocommunication Assembly, considering that new land mob
2、ile applications, such as personal radios, providing communications up to a maximum of that these personal radios have characteristics differing from existing services and may be available to a large a) 5 km in urban areas and 15 km in rural areas, are being introduced; b) public; c access technique
3、s conserves frequency spectrum; d) control of the radio path, that the utilization of the radio spectrum should be as economical as possible and that the use of multi-channel that highly flexible and economical systems can be achieved without using a central controller for setting up recommends i. a
4、ppropriate protocols that do not require the use of a central controller for the detection of an idle radio channel; 2. that these personal radio applications should include the use of multi-channel access techniques and that the technology as described below should be used in the development of sys
5、tems: 2.1 Principle of operation The principle of operation of multi-channel techniques without a central controller is as follows: All radios in the system are normally in the standby state on a control channel, ready to receive a selective calling signal. A calling station looks for and finds an i
6、dle traffic channel and stores its number in its memory. Then the calling station transmits on a control channel, a selective calling signal including at least its own identity, the identity of the called station and the number of the identified idle channel. The standby stations detecting their ide
7、ntity code in the received signal, move to the indicated traffic channel and enter into communication. At the end of the communication all units return again to the standby mode. 2.2 Speczjc systems Two systems have been developed according to this principle. System 1 - “Personal Radio System”, base
8、d on analogue modulation techniques and provides voice services in System 2 - “Digital Short Range Radio”, based on digital modulation techniques and provides voice and data services which can be applied both in a one-frequency simplex mode of operation and a two-frequency semi-duplex mode of operat
9、ion. Both systems work in the 900 MHz frequency band. They provide up to 80 channels and use a transmit power a one-frequency simplex mode of operation. of up to 5 W. More detailed data of these systems are given in Annexes 1 and 2. 2.3 Summary The design of systems using multi-channel access techni
10、ques without a central controller allows for economical communication with relatively high reliability. It may combine the advantages of digital modulation for voice and data and the ability to operate in either single or two-frequency mode. Further, the protocols allow both modes of operation with
11、the same frequency allocation to co-exist in the same geographical area. 4855232 0523234 072 Rec. ITU-R M.1032 ANNEX 1 Personal radio system 69 1. Introduction This Annex relates to the personal radio system used in Japan and introduces the basic characteristics, connecting procedure, and receiver i
12、nput level versus connection reliability. 2. 2. z 2.2 2.3 2.4 2.5 2.6 3. 3. z Basic characteristics Frequency: Channel separation: Number of channels: Class of emission: Type of operation: RF power output: Connecting procedure 903.0125 to 904.9875 MHz 25 kHz 80 (one control channel and 79 traffic ch
13、annels) ED: control channel F3E: traffic channels Simplex 5w Configuration of control signal An automatic transmitter identification system (ATIS) is included in a read-only memory (ROM) obtained from the licensing authority. The ROM is required for the operation of the personal radio system (PRS) t
14、ransceivers. Code configuration for A TIS and circuit linkage Bit synchronization: Word synchronization: Selective calling number: Channel number: 8 bits, binary Reserved bits: 4 bits, O000 50 bits, 101010 . 15 bits, 11 101 1001010000 20 bits, 5 BCD bits ATIS code: 48 bits binary: identification cod
15、es (for more than ten million stations, licence issue date and scrambling) Length of Hagelbarger code: Total: 2 x data bit length + 12 = 172 bits 172 + 65 = 237 bits (197.5 ms) Code type: NRZ Bit-rate: 1200 bit/s Modulation method: MSK i 200 Hz, mark 1 800 Hz, space 3.2 Receiver (RX) input versus co
16、nnection reliability In Fig. 1, an example of receiver input level versus bit-error ratio (BER) is shown. Line C of BER = corresponds to 90% connection reliability for the personal radio system. Y855232 0523235 TO9 Rec. ITU-R M.1032 3.3 Flow chart lo- 5 2 1 o-z 5 2 1 5 2 1 o“ 5 2 1 o- FiGRE 1 Receiv
17、er input level versw bit-error ratio performance -10 -5 O 5 10 15 20 Receiver input level (dB(pV) Curves A: Rayleigh fading: - centre frequency: 903.8875 MHz - fading frequency: 20 Hz B: nofadmg C: connection reliability: 90% or more Wf Figure 2 is a simplified communication procedure flow chart for
18、 the personal radio system. The procedure of connection is as follows. All the radios in the system are in the standby state on the control channel. The calling station looks for and finds an idle traffic channel and stores the channel number in its memory. Then it emits the control signal on the co
19、ntrol channel. Those radios whose selective call number coincides with the control signal transfer to the specified traffic channel and enter into conversation. The call sign consisting of the ATIS code is automatically transmitted before the start of conversation, every 60 s during the conversation
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