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An integrated error correction and detection system for digitalaudio broadcasting

机译:用于数字音频广播的集成纠错和检测系统

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Hybrid in-band on-channel digital audio broadcasting systems deliver digital audio signals in such a way that is backward compatible with existing analog FM transmission. We present a channel error correction and detection system that is well-suited for use with audio source coders, such as the so-called perceptual audio coder (PAC), that have error concealment/mitigation capabilities. Such error mitigation is quite beneficial for high quality audio signals. The proposed system involves an outer cyclic redundancy check (CRC) code that is concatenated with an inner convolutional code. The outer CRC code is used for error detection, providing flags to trigger the error mitigation routines of the audio decoder. The inner convolutional code consists of so-called complementary punctured-pair convolutional codes, which are specifically tailored to combat the unique adjacent channel interference characteristics of the FM band. We introduce a novel decoding method based on the so-called list Viterbi algorithm (LVA). This LVA-based decoding method, which may be viewed as a type of joint or integrated error correction and detection, exploits the concatenated structure of the channel code to provide enhanced decoding performance relative to decoding methods based on the conventional Viterbi algorithm (VA). We also present results of informal listening tests and other simulations on the Gaussian channel. These results include the preferred length of the outer CRC code for 96-kb/s audio coding and demonstrate that LVA-based decoding can significantly reduce the error flag rate relative to conventional VA-based decoding, resulting in dramatically improved decoded audio quality. Finally, we propose a number of methods for screening undetected errors in the audio domain
机译:混合带内同频数字音频广播系统以与现有模拟FM传输向后兼容的方式传送数字音频信号。我们提出了一种通道纠错和检测系统,该系统非常适合与音频源编码器一起使用,例如所谓的感知音频编码器(PAC),它具有错误隐藏/缓解功能。这样的错误减轻对于高质量音频信号是非常有益的。所提出的系统涉及与内部卷积码级联的外部循环冗余校验(CRC)码。外部CRC代码用于错误检测,提供标志以触发音频解码器的错误缓解例程。内部卷积码由所谓的互补穿孔对卷积码组成,这些卷积码经过专门设计以抵抗FM频段的独特相邻信道干扰特性。我们介绍一种基于所谓的列表维特比算法(LVA)的新颖解码方法。这种基于LVA的解码方法(可以看作是联合或集成的纠错和检测的一种),利用了信道代码的级联结构,以提供相对于基于常规维特比算法(VA)的解码方法而言增强的解码性能。我们还介绍了在高斯信道上进行非正式听力测试和其他模拟的结果。这些结果包括用于96 kb / s音频编码的外部CRC码的首选长度,并证明与传统的基于VA的解码相比,基于LVA的解码可以显着降低错误标记率,从而显着提高解码音频的质量。最后,我们提出了许多方法来筛选音频域中未检测到的错误

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