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Joint source-channel decoding for MPEG-4 video transmission over wireless channels

机译:用于MPEG-4视频传输的联合源通道解码无线信道

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摘要

This paper investigates the use of joint source-channel coding for reliable transmission of MPEG-4 video over wireless channels. We present a maximum a posteriori probability (MAP) based, joint source-channel decoder (JSCD) for variable length coded intra macroblocks and inter macroblocks in a MPEG-4 encoded video stream. We then provide a comprehensive evaluation of this paradigm as an alternative method for achieving error resilience. In particular, our method is tested in conjunction with the MPEG-4 error resilience tools such as reversible variable length codes (RVLC), resynchronization markers, and data partitioning, with and without forward error controls (FECs) and, finally, without the use of RVLCs (only variable length codes). In addition, the JSCD algorithm is tested with and without the use of FECs [Reed-Solomon (RS) codes]. These tests show that the best performance at high channel bit-error rate is obtained when all error resilience tools are co-opted. The maximum improvement due to the proposed decoder when used without FEC is about 7 dB for RVLC and 8 dB for VLCs. These numbers are about 2.2 and 7.5 dB, respectively, when the MAP decoder is used in conjunction with the RS codes.
机译:本文研究了联合源通道编码的使用,以通过无线通道可靠地传输MPEG-4视频。对于可变长度编码的帧内宏块和MPEG-4编码的视频流中的可变长度编码的帧内宏块和INTER宏块呈现基于后源概率(JSCD)的最大后验概率(MAP)。然后,我们将此范例的全面评估为实现误差弹性的替代方法。特别地,我们的方法与MPEG-4误差弹性工具一起测试,例如可逆可变长度代码(RVLC),重新同步标记和数据分区,并且在没有使用的情况下,没有转发错误控制(FEC) RVLC(仅可变长度代码)。此外,JSCD算法在没有使用FECS [Reed-Solomon(RS)代码]的情况下进行测试。这些测试表明,当所有误差弹性工具都是共选择的时,获得了高通道误码率的最佳性能。当没有FEC使用时所提出的解码器引起的最大改善是RVLC和8dB的vLC的7dB。当Map解码器与RS代码结合使用时,这些数字分别为2.2和7.5 dB。

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