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On the Maximum Achievable Partial Decode-and-Forward Rate for the Gaussian MIMO Relay Channel

机译:关于高斯MIMO中继信道的最大可实现的部分解码和转发率

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This paper considers the so-called partial decode-and-forward (DF) strategy for the Gaussian multiple-input multiple-output (MIMO) relay channel. Unlike for the DF strategy or point-to-point (P2P) transmission from source to destination, for which Gaussian channel inputs are known to maximize the achievable rates, the input distribution that attains the maximum achievable partial DF rate for the Gaussian MIMO relay channel has remained unknown so far. For some special cases, e.g., for relay channels where the partial DF strategy reduces to the DF or P2P transmission, it could be deduced that Gaussian inputs maximize the rate that can be achieved with the partial DF strategy. For the general case, however, the problem has remained open until now. In this paper, we solve this problem by proving that the maximum achievable partial DF rate for the Gaussian MIMO relay channel is always attained by Gaussian channel inputs. Our proof relies on the channel enhancement technique, which was originally introduced by Weingarten to derive the (private message) capacity region of the Gaussian MIMO broadcast channel. By combining this technique with a primal decomposition approach, we first establish that jointly Gaussian source and relay inputs maximize the achievable partial DF rate for the aligned Gaussian MIMO relay channel. Subsequently, we use a limiting argument to extend this result from the aligned to the general Gaussian MIMO relay channel.
机译:本文考虑了针对高斯多输入多输出(MIMO)中继信道的所谓的部分解码和转发(DF)策略。与从源到目的地的DF策略或点对点(P2P)传输不同,已知高斯信道输入可以实现最大的速率,而高斯MIMO中继信道的输入分布可达到最大的部分DF速率到目前为止仍然未知。对于某些特殊情况,例如,对于部分DF策略减少到DF或P2P传输的中继信道,可以推断出高斯输入将使用部分DF策略可以实现的速率最大化。但是,对于一般情况,问题一直存在至今。在本文中,我们通过证明高斯MIMO中继信道始终可获得最大的部分DF速率来解决此问题,这始终是通过高斯信道输入实现的。我们的证明依赖于信道增强技术,该技术最初是由Weingarten引入的,用于推导高斯MIMO广播信道的(专用消息)容量区域。通过将该技术与原始分解方法相结合,我们首先建立了高斯源和中继输入的联合,可最大程度地提高对齐的高斯MIMO中继信道可实现的部分DF速率。随后,我们使用一个限制参数将这个结果从对齐扩展到一般的高斯MIMO中继信道。

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