CEPT T CD 02-04 E-1986 Engineering Requirements for a Synchronous Digital Multiplexer for Use with Non Envelope Structured Data《与无封套结构数据一起使用的的同步数字复用器工程要求》.pdf
《CEPT T CD 02-04 E-1986 Engineering Requirements for a Synchronous Digital Multiplexer for Use with Non Envelope Structured Data《与无封套结构数据一起使用的的同步数字复用器工程要求》.pdf》由会员分享,可在线阅读,更多相关《CEPT T CD 02-04 E-1986 Engineering Requirements for a Synchronous Digital Multiplexer for Use with Non Envelope Structured Data《与无封套结构数据一起使用的的同步数字复用器工程要求》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、CEPT T/CD*02-04*E b 232b414 0003523 9 Page 1 TCD02-04E Recommendation T/CD 02-04 (Odense 1986) ENGINEERING REQUIREMENTS FOR A SYNCHRONOUS DIGITAL MULTIPLEXER FOR USE WlTH NON ENVELOPE STRUCTURED DATA Recommendation proposed by Working T/WG 10 “Data communications” (CD) Text of the Recommendation ado
2、pted by the “Telecommtmications” Commission: “The Conference of European Post and Telecommunications Administrations, considering - that working group CD has studied under the auspices of Question CD 1 the harmonization of Data Circuit Terminating Equipment, recommends - that the attached specificat
3、ion of engineering requirements for a synchronous digital multiplexer for use with non envelope structured data as contained in Annex 1 to this Recommendation should be taken into account by all CEPT Administrations when the implementation of a relevant piece of equipment is being planned by Adminis
4、- trations.” a Administrations are free to stipulate additional requirements, and also which of the optional requirements, if any, are to be provided. Note 1. It should be noted that this Recommendation may be revised from time to time. Edition of April 15, 1987 , CEPT T/CD*02-04*E 6 23261134 000352
5、2 O W T/CD 02-04 E Page 2 Annex 1 SECIION I. PARAMETERS REQUIRED FOR INTERWORKING 1-1. 1-2. 1-3. 1-3.1. I-3,l. 1 , 1-3.1.2. 1-3.1.3. 1-3.1.4. 1-3.1.5. GROSS BIT RATE The aggregate bit stream shall have a gross bit rate of 64 kbit/s. TRIBUTARY CHANNEL BITRATES The following tributary channel bitrates
6、 are supported: - 2.4 kbit/s - 4.8 kbitls - 9.6 kbit/s - 19.2 kbit/s Other bitrates are not excluded. MULTIPLEX SCHEME The multiplex scheme is shown in Figure 1-1 (T/CD 02-04). The frame length is 640 bit. The frame duration is 10 ms. Tributary channel data is grouped in octets and appears in slots
7、A, through F,. Slots S, contain synchronisation octets. Slots T, contain service octets. 4 160 bits = 20 octets Figure 1-1 (T/CD 02-04). Multiplex scheme. Data Octets One frame contains 72 data octets. Thus the multiplex stream can support 24 channels of 2.4 kbit/s, or 12 channels of 4.8 kbit/s, or
8、6 channels of 9.6 kbit/s, or 3 channels of 19.2 kbit/s, or combinations thereof. The allocation of individual octets to a tributary channel is detailed below. 2.4 kbitls 2.4 kbit/s tributary channels employ 1 out of 24 data octets. A 2.4 kbit/s channel will thus be allocated to all slots with the sa
9、me identifier, i.e. identification letter and identification digit (e.g. Al). 4.8 kbitls 4.8 kbit/s tributary channels employ 1 out of 12 data octets. A 4.8 kbit/s channel will thus be allocated to all slots with the same identification letter in the range A-F and two different identification digits
10、 1 and 3 or 2 and 4 (e.g. B1 and B3). 9.6 kbitls 9.6 kbit/s tributary channels employ 1 out of 6 data octets. A 9.6 kbit/s channel will thus be allocated to all slots with the same identification letter in the range A-F and four different identification digits 1, 2, 3 and 4 (e.g. D1, D2, D3 and D4).
11、 19.2 kbitls 19.2 kbit/s tributary channels employ 1 out of 3 data octets. A 19.2 kbit/s channel will thus be allocated to slots with two different identification letters from the range A-F: A and D or B and E or C and F, and four different identification digits 1, 2, 3 and 4 (e.g. C1, FI, C2, F2, C
12、3, F3, C4 and F4). Other bitrates For other bitrates no allocation of octets to a tributary channel is specified. From the scheme in Figure 1 (T/CD 02-04) it can be derived that any bitrate n times 2.4 kbit/s where n is 1 through 24 can be supported. O r -. - Edition of April 15, 1987 CEPT T/CD*02-0
13、4*E 6 2326434 0003523 2 T/CD 02-04 E Page 3 1-3.2. Synchronisation Octets One frame contains 4 synchronisation octets. These contain xed bit patterns as follows: S1 = 27 = 00100111 S2 = 1B = 00011011 S3 = 05 = 00000101 s4 = 35 = 00110101 Note. Coding of the synchronisation octets is such that they d
14、o not overlap; Le. when in random data one of the synchronisation octets is simulated, no other simulation will occur for 125 ps being the nominal duration of one octet. 1-3.3. Service octets Use of these octets is to be defined. Possible applications are: - use for exchange of information between t
15、he multiplexers concerning tributary channel allocation, - transfer of status information 01.24 105-109 signalling or X.24 C-I signalling) per tributary channel; - justification. routing, maintenance etc.; 1-4. FRAME SYNCHRONISATION Frame synchronisation is obtained by the receiving multiplexer duri
16、ng normal operation. No interaction between multiplexers at both ends of the link is required for this purpose. Edition of April 15, 1987 CEPT T/CD*02-04*E b M 2326414 0003524 4 M T/CD 02-04 E Page 4 SECTION II. EQUIPMENT SPECIFICATION 11-1. SYSTEM LAYOUT The basic multiplexer consists of two differ
17、ent units, tributary channel units (TCUs) and multiplexing units (MUS). See Figure 1 (T/CD 02-04). Several units of each type constitute a physical multiplexer configura- tion. The minimum configuration is one MU and one TCU. Specific configurations may be tailored by Administrations depending on th
18、e application and can be changed when so required. Note. Other units may be specified in future. All units are connected via a bus in accordance with the CEPT BUS SPECIFICATION T/CD 02-06. Structure 2 of this specification is recommended. The basic function of each unit is to receive data from the e
19、xternal interface (tributary channel or aggregate channel), arrange these data into octets, apply these octets together with adequate address information to the bus and vice versa. There shall be no limitation to the possibility to transmit data via the bus to any other unit. The internal address op
20、tion of the structure 2 bus is used to identify physical channels in TCUs or logical channels in MUS. Address information is derived from instructions received from the maintenance system as described in chapter 11-5. BUS BUS BUS Figure 11-1 (T/CD 02-04). System layout. 11-2. TRIBUTARY CHANNEL UNIT
21、The tributary channel unit (TCU) may support one or more tributary channels. If the unit supports more than one tributary channel, the channel data rates may be: - identical - independent within the set 2.4-19.2 kbit/s - independent within a subset The TCU will collect data from the tributary channe
22、l interfaces, arrange these data into octets and apply these octets together with address information (destination address, consisting of unit address and internal address) to the bus with minimal delay. Data octets received from the bus will be buffered prior to being transferred to the tributary c
23、hannel interface in order to allow for the correction of system jitter. A maximum delay of 8 octets is recommended for rates until 9.6 kbitls. Buffer size for- 19.2 kbit/s is for further study. For 2.4 kbit/s a smaller buffer may be advisable. Channels (= bus internal addresses) are numbered with ev
24、en numbers starting with 2. Internal address O is reserved for maintenance purposes (ref. chapter 11-5.). Maintenance functions of the TCU are described in chapter 11-5. .- Edition of April IS, 1987 11-3. 11-3.1. 11-3.2. 11-3.2. T/CD 02-04 E Page 5 MULTIPLEXING U“ General The multiplexing unit (MU)
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