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Joint source-channel coding via model predictive control

机译:通过模型预测控制的联合源通道编码

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We propose a joint source-channel coding (JSCC) scheme based on model-predictive control (MPC) for encoding an analog discrete-time source over a memoryless communication channel. The decoder is assumed to be fixed and given, and the MPC encoder is set to minimize the frequency-weighted mean-squared error (FWMSE) while satisfying a channel input constraint. We derive analytic expressions for the associated finite-horizon optimization MPC problem for an asymptotic (in time) average or sum channel input constraint. For the case of complex additive white Gaussian noise channel and an M-quadrature-amplitude modulation (M-QAM) decoder, these expressions can be written explicitly, which allows for an efficient numerical solution. For the case M=4 and considering a frequency weighting criterion that models the sensitivity of the human hearing, we show by simulations that our proposed scheme yields an FWMSE significantly smaller than that yielded by the corresponding non-JSCC scheme (a 2-bit uniform quantizer in tandem with a 4-QAM channel encoder and decoder). (C) 2021 Published by Elsevier Ltd on behalf of European Control Association.
机译:我们提出了一种基于模型预测控制(MPC)的联合源通道编码(JSCC)方案,用于通过无记忆通信信道编码模拟离散时间源。假设解码器是固定的并且给出的,并且将MPC编码器设置为最小化频率加权平均平方误差(FWMSE),同时满足信道输入约束。我们为渐近(及时)平均或总和通道输入约束的相关有限范围优化MPC问题的分析表达式。对于复杂添加性白色高斯噪声信道和M-Quadrature-幅度调制(M-QAM)解码器的情况,可以明确地写入这些表达式,这允许有效的数字解决方案。对于案例M = 4并考虑模拟人类听证敏感性的频率加权标准,我们通过模拟显示我们所提出的方案,其产生了比相应的非JSCC方案(A 2位均匀)产生的FWMSE显着小。串联的量化器与4 QAM通道编码器和解码器)。 (c)由elsevier有限公司发布的2021年代表欧洲控制协会发布。

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