TIA-889-A-2003 Minimum Performance Specification for Text Telephone Signal Detector and Text Telephone Signal Regenerator See TIA-889-A [SF] For IHS TIA Subscription Customers Onlne.pdf
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1、 TIA DOCUMENT Minimum Performance Specification for Text Telephone Signal Detector and Text Telephone Signal Regenerator TIA-889-A (Revision of TIA/EIA/IS-889) December 2003 TELECOMMUNICATIONS INDUSTRY ASSOCIATION The Telecommunications Industry Association represents the communications sector of Co
2、pyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NOTICE TIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between ma
3、nufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining 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-memb
4、er of TIA from manufacturing or selling products not conforming to such Publications. Neither shall the existence of such Documents preclude their voluntary use by non-TIA members, either domestically or internationally. TIA DOCUMENTS TIA Documents contain information deemed to be of technical value
5、 to the industry, and are published at the request of the originating Committee without necessarily following the rigorous public review and resolution of comments which is a procedural part of the development of a American National Standard (ANS). Further details of the development process are avai
6、lable in the TIA Engineering Manual, located at http:/www.tiaonline.org/standards/sfg/engineering_manual.cfm 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 Stan
7、dard on this subject. Suggestions for revision should be directed to: Standards that a certain course of action is preferred but not necessarily required; or that (in the negative 23 form) a certain possibility or course of action is discouraged but not prohibited. “May” and “need not” indicate 24 a
8、 course of action permissible within the limits of the standard. “Can” and “cannot” are used for statements of 25 possibility and capability, whether material, physical, or causal. 26 2 THE BAUDOT CODE 27 TTY devices transmit characters using a 45.45 bps or 50 bps Baudot code. Each bit has a nominal
9、 duration of 28 22 ms for 45.45 bps and 20 ms for 50 bps. A character consists of 1 start bit, 5 data bits, and 1-2 stop bits. The 29 code uses a carrierless, binary FSK signaling scheme. A mark, or “1”, is transmitted with a 1400 Hz tone. The 30 space, or “0”, is transmitted with an 1800 Hz tone. 3
10、1 In TTY devices, the first tone of a character may be the space tone of the start bit, or a mark tone preceding the 32 start bit. Furthermore, there is a mark hold tone, which extends the length of time the stop bit is transmitted 33 following the last character from 150 ms to 300 ms. The mark hold
11、 tone is not transmitted if the character is 34 immediately followed by another character. The mark hold tone prevents the transmitting TTY device from 35 receiving its echo and mistaking it for an incoming character. This mechanism is effective for wireline calls but 36 may not be sufficient to mit
12、igate echo in wireless scenarios because of the longer delays. Refer to the TTY 37 specification for a solution to mitigating echo in wireless networks. 38 With 5 data bits, the Baudot code is only capable of 32 different characters, which is not enough to represent 39 the alphabet, numbers, and pun
13、ctuation. This problem is remedied by introducing “shift” characters that 40 Deleted: and noise suppression, all Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TIA-889-A change the way
14、the receiving TTY device interprets the 5 data bits. There exists the letters shift character (31) 1 and the figures shift character (27). Following the letters shift character, the receiving TTY device interprets 2 the 5-bit code using the letters library, which consists of letters of the alphabet.
15、 The figures library contains 3 numbers, punctuation, and special characters. The TTY device automatically sends the shift character when the 4 user switches from characters in one library to the other. The consequence of this scheme is that if the shift 5 character is received incorrectly, every ch
16、aracter thereafter will be misinterpreted with the wrong library until 6 another shift character is received correctly, causing a string of character errors. 7 3 CHARACTER ERROR RATE 8 Because of the shift character, it is possible to receive the 5-bit Baudot code correctly, but print the wrong 9 ch
17、aracter if the shift key was received in error. Therefore, there exist two different measures of character error 10 rates; Printable Character Error Rate (PCER) and Total Character Error Rate (TCER) 5. PCER compares the 11 actual text sent and received without any consideration to the underlying met
18、hod of transfer, which involved 12 conversion to and from Baudot with the insertion of shift state characters. TCER recognizes the Baudot 13 character set and the insertion of shift characters by comparing the 5-bit Baudot code directly. 14 For both PCER and TCER, the character error rate is compute
19、d by counting the number of missed and changed 15 characters. The number of characters in the reference file is considered the total number of characters. PCER 16 = (missed + changed)/total for the printable characters and TCER = (missed + changed)/total for the 5-bit 17 Baudot code character set. T
20、he number of added characters is not considered in the character error rate. 18 The TTY Forum has set a goal for the character error rate to be less than 1%, however, there was no agreement 19 as to whether that would be TCER or PCER. The TTY solution adopted for CDMA is capable of far exceeding 20
21、this goal. For the purposes of this minimum performance requirement, only the TCER shall be used because it 21 does not depend on the content of the TTY sequences. Furthermore, the TCER shall be calculated using the 22 tools provided with this specification in conjunction with the UNIX diff command.
22、 See Section 5 for a 23 description of the tools. 24 4 TTY/TDD TEST CASES 25 This section describes the test cases that are exercised in this minimum performance specification. Compliance 26 with these requirements shall be verified by processing the accompanying test vectors and using the 27 accomp
23、anying tools, as described in Section 6. 28 4.1 Interoperability with Reference TTY Vocoder 29 The test vocoder shall interoperate with the simulation of its corresponding reference vocoder. Packets from 30 the test encoder shall interoperate with the reference decoder, and vice versa. 31 4.2 Intero
24、perability with Reference Non-TTY Capable Vocoder 32 The test vocoder shall interoperate with legacy, non-TTY capable vocoders. Packets from the test encoder shall 33 interoperate with the reference decoder, and vice versa, for TTY and non-TTY inputs. Performance with the 34 test vocoder and non-TTY
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