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Coding for Additive White Noise Channels With Feedback Corrupted by Quantization or Bounded Noise

机译:反馈受量化或有界噪声破坏的加性白噪声信道的编码

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We present coding strategies, which are variants of the Schalkwijk-Kailath scheme, for communicating reliably over additive white noise channels in the presence of corrupted feedback. Our framework comprises an additive white forward channel and a feedback link. We consider two types of corruption mechanisms in the feedback link. The first is quantization noise, i.e., the encoder receives the quantized values of the past outputs of the forward channel. The quantization is uniform, memoryless and time invariant. The second corruption mechanism is an arbitrarily distributed additive bounded noise. Here we allow symbol-by-symbol encoding at the input to the feedback link. We propose explicit schemes featuring positive information rate and positive error exponent. If the forward channel is additive white Gaussian (AWGN) then, as the amplitude of the noise at the feedback link decreases to zero, the rate of our schemes converges to the capacity of the channel. Moreover, the probability of error is shown to converge to zero at a doubly exponential rate. If the forward channel is AWGN and the feedback link consists of an additive bounded noise channel, with signal-to-noise ratio (SNR) constrained symbol-by-symbol encoding, then our schemes achieve rates arbitrarily close to capacity, in the limit of high SNR (at the feedback link).
机译:我们提出了编码策略,这是Schalkwijk-Kailath方案的变体,用于在存在损坏的反馈的情况下通过加性白噪声通道可靠地进行通信。我们的框架包括一个加性白前向通道和一个反馈链接。我们在反馈链接中考虑两种类型的损坏机制。首先是量化噪声,即编码器接收前向信道过去输出的量化值。量化是统一的,无记忆的且时间不变的。第二种破坏机制是任意分布的加性有界噪声。在这里,我们允许在反馈链接的输入处逐符号编码。我们提出了具有正信息率和正误差指数的显式方案。如果前向信道是加性白高斯(AWGN),则随着反馈链路上噪声的幅度减小到零,我们的方案的速率收敛到信道的容量。此外,错误概率显示为以双指数速率收敛到零。如果前向信道是AWGN,并且反馈链路由加有界噪声信道组成,且信噪比(SNR)受到逐个符号的编码,则我们的方案可以在以下范围内任意达到接近容量的速率高SNR(在反馈链路上)。

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