TIA-619-1996 Aggregation of Multiple Independent 56 Kbits s or 64 Kbits s Channels into a Synchronized Wideband Connection《多个独立56 kbit s或64 kbit s信道到A同步宽带连接上的集合》.pdf
《TIA-619-1996 Aggregation of Multiple Independent 56 Kbits s or 64 Kbits s Channels into a Synchronized Wideband Connection《多个独立56 kbit s或64 kbit s信道到A同步宽带连接上的集合》.pdf》由会员分享,可在线阅读,更多相关《TIA-619-1996 Aggregation of Multiple Independent 56 Kbits s or 64 Kbits s Channels into a Synchronized Wideband Connection《多个独立56 kbit s或64 kbit s信道到A同步宽带连接上的集合》.pdf(109页珍藏版)》请在麦多课文档分享上搜索。
1、TIA DOCUMENT 1 Reaffirmed September 6,2002 Aggregation of Multiple Independent I April 1996 56 kbit/s or 64 kbit/s Channels into a Synchronized Wideband Connection TIA-619 TELECOMMUNICATIONS INDUSTRY ASSOCIATION nie Telecommunications Indudry ASFOciation represents the communications sector o Electr
2、onic Industries Alliance NOTICE TIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and o
3、btaining with minimum delay the proper product for their particular need. The existence of such Publications shall not in any respect preclude any member or non-member of TIA from manufacturing or selling products not conforming to such Publications. Neither shall the existence of such Documents pre
4、clude their voluntary use by non-TIA members, either domestically or internationally. TIA DOCUMENTS TIA Documents contain information deemed to be of technical value to the industry, and are published at the request of the originating Committee without necessarily following the rigorous public revie
5、w and resolution of comments which is a procedural part of the development of a American National Standard (ANS). TIA documents shall be reviewed on a five year cycle by the formulating Committee and a decision made on whether to reaffirm, revise, withdraw, or proceed to develop an American National
6、 Standard on this subject. Suggestions for revision should be directed to: Standards the absence of the FAW 128 octets later, detected by verifying that Bit 1 = 1 in the Fc octet; the presence of the correct frame alignment word (FAW) in the next frame. To speed the inlaal establishment of frame ali
7、gnment, an endpoint shall transmit an ai ones pattern in the Data bits of the frame on iniaal establishment of the connection until it receives the remote Alignment (A) bit set to one for two consecutive CRC octets. - - - 8 EIA TIA-619 96 = 3234600 O573834 7T8 = TIMIA-61 9 An endpoint mall begin tra
8、nsmitting an al ones pattern in the Data bits cx the frame whenever t receives an A bit set to zero in two consecutive CRC octets. Receipt of an A bit set to zero in two consecutive CRC octets indicates that the remte endpoint has lost frame alignment. 5. DESCRIPTION OF CRC4 PROCEDURE The CRC4 proce
9、dure can be used to provide an end-bend quality monitor of each 56/64 Ws channel. The four CRC bits (bit positions 4 to 7 of octet 256 )contain the CRC computed d the source location. In addition, bit3of the cameoctet, referred to as the E bit, is used to transmit a1 error indication about the recei
10、ved data in the opposite direction (.e., whether or not the previous frame was received Witti errors). The CRC4 used in these procedures is defined in CCIlT Recommendation H.221. 5.1. Computation of the CRC4 bits The CRC4 is computed from the whole 56/64 kWs channel from the previous 255 octets of t
11、he frame before the CRC4 octet. The CRC4 is therefore computed over 255 octets sMrng with the first octet of the frame (.e., the octet immediately following the CRC4 octet of the previous frame) and ending with the octet just preceding the CRC 4 octet (.e., Octet 255). The CRC-4 met is not included
12、in the CRC 4 calculation. The CRC4 computation Is performed 31.25 times per second. 5.1.1. Multiplication and division process A given CRC4 located in Octet 256 is the remainder ater multiplication by $ and then division (modulo 2) by the generator polynomial e + X+ 1 of the polynomial representatio
13、n of the 255 octets preceding the CRC octet in the frame. When representing contents of aframe as a polynomial, the first bit in the frame shall be taken as being the most significant bit. Sirnuarty Bit 4 of the CRC octet is defined to be the most significant bit of the remainder and Bit 7 is the le
14、ast significant bit of the remainder. 5.1.2. Encoding procedure Octets 1 through 255 of the frame are acted upon by the multiplication and dMsion process defined in 5.1.1. The remainder, resuiting ffom the mulplition and division process, Is inserted into the CRC 4 field 3f Octet 256 (the CRC octet)
15、 of the rart.-. The CRC is dways computed over 8 bit octets. When using 56 Ws bearer channels, bit 8 of each octet shall be forced to “1“ for consistency. Note: As described in 4.2, lor 56 kWs bearer channels, an 8th bit set io 1 is stuffed at the end of each septet before CRC encoding. This 8th bit
16、 of each octet will be stripped after CRC calculation and before transmission if 56 kWs baseband bearer channels are used 5.1.3. Decoding procedure Octets 1 through 255 of a received frame are acted upon by the multipiiin and division process, defined in 5.1.1. When using 56 kbits bearer channels, a
17、n 8th bit set to “1“ shall be added to each septet (as derived from FAW alignment) to form octets or consistency. The remainder, resulting from the multiplication and division process iscompared on a bit-by-bit basis with the CRC4 received in octet 256 of the frame. if the decoded, calculated remain
18、der equals the CRU received in Octet 256, then the checked frame is considered emf-free. t they are different, then the checked frame is considered in error. Note: As described in 4.2, CRC calculation is performed after insertion of a1 8th bit set to 1 at the end of Xh Septet. 9 5.2. Consequent acti
19、ons 5.2.1. Enabling and Disabling the CRC procedures An endpoint shall indicate that CRC procedures are being used by starting the CRC Encoding process on the transmitting end, thereby not transmitting the CRC bits asd 1s. If an endpoint supports the CRC procedure on this channel, it shall enable th
20、e CRC Decoding process when it receives a CRC Octet with the CRC bits set to avalue other than al 1s; otherwise, it shall transmit the E bit set to O and CRC set to dl 1 s. An endpoint shall indicate that CRC Encoding procedures are being disabled by setting ai CRC bits to binary 1 and setting the E
21、 bit to O. An endpoint shall disable the Decoding process when it receives three CRCoctets with CFCset to d 1s and an bit set to O. The above procedure can induce a short period of CRC errors while the endpoints start and stop CRC procedures. The actions taken in the following two sections should ta
22、ke this into account. This procedure aHows an endpoint to enable the CRC procedures on achannel by channel basis. 5.2.2. Action on bit E The E Mt of the CRC octet is set to 1 in the transmitting direction when aCRC mor is detected in the receive direction (see 5.1.3). Otherwise, it is set to zero. 5
23、.2.3. Monitoring for error performance The quality of the received 56/64 kbit/s channel can be monitored by counting the number of CRC frames in em within a period of one second. The quality of the transmitted 56/64 Ws channel can be monitored by counting the number of received E bits set to 1. The
24、threshold Iw declaring a channel out of service is left or further study and is implementation dependent. 6. DESCRIPTION OF THE INFORMATION CHANNEL The information channel is used to communicate control information between two endpoints. In dl mudes, the Information Channel occupies the entire bandw
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