ITU-R F 764-1-1994 Minimum Requirements for HF Radio Systems Using a Packet Transmission Protocol《使用分组传输协议的高频无线系统的基本要求》.pdf
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1、Rec. ITU-R F.764-1 RECOMMENDATION ITU-R F.764- 1 147 MINIMUM REQUIREMENTS FOR HF RADIO SYSTEMS USING A PACKET TRANSMISSION PROTOCOL (Question ITU-R 158/9) ( 1992- 1994) The ITU Radiocommunication Assembly, considering 4 that there is an increasing demand to provide a virtually error-free digital dat
2、a service for HF radio systems; b) that it is desirable to specify the requirements of HF packet radio systems, recommends 1. that as a minimum requirement for HF packet radio system protocols: 1.1 the HF packet protocols should sustain the highest throughput for a wide range of channel conditions;
3、1.2 probability is better than 1 x lop8 when the channel raw bit error ratio is 1 x 1C2; the packet protocols should employ error detection and correction schemes to ensure that the undetected error 1.3 the packet protocols when operated in ARQ mode should utilize selective repeat algorithms. The re
4、dundancy of FEC should be transmitted when a repeat of the packet in error is requested. If the repeated packet is received correctly, then the information is recovered and delivered to the message destination. If the repeated packet contains one or more errors, the two versions of the packet relate
5、d to the same information are put through an FEC procedure and checked for errors. If the processed packet is deemed to be error free, then the information is delivered to the destination. The levels of FEC can be increased from 2 as described for higher performance. Also soft decision values of the
6、 received packet signal can be utilized for better FEC performance. Such a system is described in Annex 2; 1.4 the data transmission should be in synchronous mode; 1.5 the packet should contain sufficient preamble for receiver modem bit timing synchronization to take place; 1.6 the packet should hav
7、e at least 16 bit frame synchronizations in order to reduce false frame detection; 1.7 acceptance of traffic intended for other stations; the packets should contain identification of sending and receiving stations in order to prevent erroneous 1.8 the packet transmitting station should employ some m
8、ethod of carrier detection, packet detection, or synchronization with other stations sharing the same radio channel in order to reduce packet collisions and interference with the packets already in transmission in the channel; 2. reported. The study of the techniques for optimization of HF packet sy
9、stems is also recommended; that this Recommendation should be updated as new techniques are developed and relevant information is 3. that the following Notes should be considered as part of this Recommendation. Note I - Annex 1 describes a system which employs an HF packet protocol. Note 2 - Annex 2
10、 describes a system which employs an HF packet radio protocol with selective ARQ and FEC. Note 3 - Annex 3 lists features of a terminal node controller (TNC) which incorporates the AX.25 packet radio protocol. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Inform
11、ation Handling ServicesITU-R RECMNaF- 7b4-3 94 m 4855232 0522335 890 m 148 Rec. ITU-R F.764-1 Note 4 - Annex 4 describes a system which employs an HF packet protocol for data transmission, with error correction, detection of uncorrectable errors and repetition of frames not received or not corrected
12、. ANNEX 1 Transportable HF radiocommunication equipment for transmission of hard-copy messages 1. Introduction A data terminal is described which can be interfaced with HF radios for the transmission of text messages when the propagation conditions do not permit intelligible voice communications. Th
13、e system is suitable for use on ships and in remote areas where other means of communication are not available. The important characteristics of the system include: - real-time channel evaluation and selection; - - interface with the telephone network for remote control; economical deployment in rem
14、ote areas. 2. System configuration The data terminal is designed to operate with transceivers in a network of up to 128 stations sharing a common set of frequencies. 3. System description The data terminal is the size of a portable typewriter, consisting of an alphanumeric keyboard, a 20-character l
15、ight emitting diode (LED) display and a 20-column printer. The package also includes a central processor, modems and a radio interface board (Fig. 1). A message of up to 1280 characters can be entered into the terminal memory and may be checked on the LED display or printer and edited if required. W
16、hen the operator is satisfied with the content of the memory, the message can be directed to a particular destination terminal by entering the destination terminal address via the keyboard. Message transmission takes place under a packet radio protocol which not only identifies the sender and receiv
17、er but also allows the receiver to locate portions of the message corrupted by interference or fading. Optional ARQ is activated until the message is correctly received. The protocol is specifically designed to accommodate transceivers which cannot rapidly switch from receive to transmit: single fre
18、quency semi-duplex operation is used. As each packet is received, the terminal stores it and automatically prints out the entire message at the conclusion of the transmission. A confirmation signal is returned to the originating terminal to indicate that the message has been successfully received. A
19、n operator is not required at the receiving end. The system uses in-band frequency diversity to combat selective fading. Two FSK modems using 170 Hz shift operating at 100 bit/s are used to transmit identical data. The data are assembled into an 8-bit byte, including one parity bit. A one-byte cycli
20、c redundancy code is added to form a robust code which allows a character error ratio of only one in 1 Os after ARQ is applied. Frequency channel selection is under the control of the terminal. When message transmission is initiated, an automatic procedure is activated which causes the stations to s
21、earch, among the frequencies assigned to the network, for a frequency capable of supporting data transfer. In this way, the reliability of the network is maintained even when experienced operators are not available. if no suitable frequency can be found, a message is printed informing the sender of
22、this fact. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling ServicesITU-R RECflN*F. 764-1 94 W 4855232 052233b 727 - Mains or battery 0- 12 v Display Keyboard Power supply Printer - 1 Rec. ITU-R F.764-1 FIGURE 1 The hard-copy message terminai M
23、ain CPU memory and control madmachine interface 149 I RS 232 H Modem E- !%! access from the switched network for remote terminal operations; - - storage, editing and transmission of messages from disk media; high quality Group 3 facsimile image with 7.7 x 3.85 line/mm resolution; - - enhanced throug
24、hput through hybrid ARQ with forward error correction; - hardware built to fit into one expansion slot of a 8088 based personal computer; interfaced to HF SSB transceivers via audio ports. - 2. System description The terminal is built around an 8088 microprocessor based personal computer that has a
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