ANSI TIA EIA-125-A-2000 Recommended Minimum Performance Standard for Digital Cellular Spread Spectrum Speech Service Option 1 (Includes Access to Additional Content).pdf
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1、 Access to Additional Content for TIA/EIA-125-A, Dated: August 2000 (Click here to view the publication) This Page is not part of the original publication This page has been added by IHS as a convenience to the user in order to provide access to additional content as authorized by the Copyright hold
2、er of this document Click the link(s) below to access the content and use normal procedures for downloading or opening the files. TIA-EIA-125-A Files Information contained in the above is the property of the Copyright holder and all Notice of Disclaimer a fair implementation of the algorithm in soft
3、ware; or some other mechanism. A fair3implementation in software shall yield bit exact output with reference to any hardware implementation that it is4claimed to represent.5The input speech material has been precision-limited by an 8-bit -law quantization algorithm in which the6inverse quantized lin
4、ear samples fill the entire 16-bit linear range. As specified in 2.4.2.1.1 of IS-96-C, the master7codec assumes a 14-bit integer input quantization. Thus the master encoder scales down the 16-bit linear8samples by 4.0 before processing, and the master decoder scales the output up by 4.0 after proces
5、sing. In order9for the test codec to match the master codec, a similar pre-processing and post-processing scaling function shall10be performed. This may be done either internally by the test codec or externally by using a scaling function on11the input and output speech. (Note: one method of externa
6、lly scaling the data is to use the program scale.c12supplied in directory /tools of the companion software, (see 3.3.6) with a 0.25 factor before encoder13processing and a 4.0 factor after decoder processing.)14TIA/EIA/125-A1-6No text.1TIA/EIA/I125-A2-12 CODEC MINIMUM STANDARDS1This section describe
7、s the procedures used to verify that the speech codec implementations meet minimum2performance requirements. Minimum performance requirements may be met by either:3 Meeting strict objective performance requirements (see 2.1), or4 Meeting a combination of a less strict objective performance requireme
8、nts and subjective performance5requirements (see 2.2).6In the first case, objective performance requirements have to be met by both the encoder and decoder. In the7latter case the decoder has to meet objective performance requirements for voice quality, while the encoder has8to meet objective measur
9、es for encoding rate. Manufacturers are cautioned that the equivalent of a full floating-9point implementation of the IS-96-C codec may be required to meet the performance requirements of the strict10objective test. Minimum performance may be demonstrated, by meeting the requirements of either 2.1,
10、or those11of 2.2.122.1 Strict Objective Performance Requirements13An objective measure of accuracy is obtained by computing the segmental signal-to-noise ratio (SNRSEG)14between various encoder/decoder combinations. The specific measure of accuracy is based upon the15distribution of SNR measurements
11、 collected over a large database.16The strict objective performance test may include up to four stages (see Figure 2.1-1).17In the first stage, the speech source material as described in 3.5 is input to both the master and test encoders.18All speech source material supplied in the directory /expt1/o
12、bjective, as described in Figure 3.6-1 of the19companion software distribution, is to be used. The resulting output bit streams are saved. The output bit20stream of the master encoder is input to both the test and master decoders. The output speech signals are21compared using the procedure described
13、 in 2.1.1. If these signals agree according to the specific minimum22performance requirements for the method defined in 2.1.1, they are considered to be in close agreement. If these23signals are not in close agreement, then the strict objective performance requirements of this section are not met24(
14、see 2.2.1.3).25If there is close agreement, then the second stage of testing may proceed. The impaired bit stream from the26master encoder, found in the file /expt2/objective/expt2obj.pkt, described in Figure 3.6-1, is input27to both the test and master decoders. The output speech signals are compar
15、ed using the procedure described in282.1.1. If these signals are not in close agreement, then the strict objective performance requirements of this29section are not met (see 2.2.1.3).30TIA/EIA/IS-125-A2-21Input speech into both test and master encoders. Input impaired channel packets from master cod
16、ec into both test and master decoder.NYNStrict objective performance reqts are not met.Does master/test pass decoder requirements?Stages 1 and 2Is bitstream of test encoder equal to bitstream of master encoder?PassYStage 3Do test/master and test/test meet encoder/decoder requirements?Stage 4NNPassY2
17、Figure 2.1-1. Flow Chart for Strict Objective Performance Test3TIA/EIA/I125-A2-3If there is close agreement, then the third stage of testing may proceed. The output bit streams of the master1encoder and test encoder are compared. If the bit streams are identical, then the test encoder/decoder has me
18、t2the minimum performance requirements and no further testing is required.3If the bit streams are not identical, then the fourth stage of the strict test may be attempted. In this stage, the4speech output from the test encoder/master decoder and test encoder/test decoder combinations are both5compar
19、ed with the output of the master encoder/master decoder using the procedure described in 2.1.1. If both6combinations pass the acceptance criteria of 2.1.1, then the test encoder/decoder has met the minimum7performance requirements and no further testing is required. If both combinations do not pass
20、the acceptance8criteria, then the strict objective performance requirements of this section are not met.92.1.1 Strict Encoder/Decoder Objective Test Definition10The strict encoder/decoder objective test is intended to validate the implementation of the speech codec under11test. The strict objective
21、test is based upon statistical comparisons between the output of the master codec (see122.1) and combinations of the test encoder and decoder as listed below:13 Master encoder/test decoder (Stage 1)14 Master encoder with impaired packets/test decoder (Stage 2)15 Test encoder/master decoder (Stage 4)
22、16 Test encoder/test decoder (also Stage 4)17This test is a measure of the accuracy of the codec being tested in terms of its ability to generate a bit-stream18identical (or nearly identical) to that of the master codec when supplied with the same source material. The test19is based upon statistics
23、of the signal-to-noise ratio per 5 ms time segment, SNRi. Defining the output samples of20the master codec as xi(n) and those of the combination under test as yi(n), the SNRi for a segment i is defined as2122SNRi = 10 log10 PxiRi for Pxi or Pyi = T0 for Pxi and Pyi 64 bin 647The procedure is outline
24、d below, where the function int(x) truncates to the nearest integer whose value is8less than or equal to the value of x:910snr1:n SNRi values, snri = 0.0 indicates silence11h1:64 histogram values12npoint number of data points used to compute histogram13SNRSEG average value of SNRi values14SNRSEG = 0
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