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On Gaussian MIMO BC-MAC Duality With Multiple Transmit Covariance Constraints

机译:具有多发送协方差约束的高斯MIMO BC-MAC对偶

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摘要

Owing to the special structure of the Gaussian multiple-input multiple-output (MIMO) broadcast channel (BC), the associated capacity region computation and beamforming optimization problems are typically non-convex, and thus cannot be solved directly. One feasible approach is to consider the respective dual multiple-access channel (MAC) problems, which are easier to deal with due to their convexity properties. The conventional BC-MAC duality has been established via BC-MAC signal transformation, and is applicable only for the case in which the MIMO BC is subject to a single transmit sum-power constraint. An alternative approach is based on minimax duality, which can be applied to the case of the sum-power constraint or per-antenna power constraint. In this paper, the conventional BC-MAC duality is extended to the general linear transmit covariance constraint (LTCC) case, which includes sum-power and per-antenna power constraints as special cases. The obtained general BC-MAC duality is applied to solve the capacity region computation for the MIMO BC and beamforming optimization for the multiple-input single-output (MISO) BC, respectively, with multiple LTCCs. The relationship between this new general BC-MAC duality and the minimax duality is also discussed, and it is shown that the general BC-MAC duality leads to simpler problem formulations. Moreover, the general BC-MAC duality is extended to deal with the case of nonlinear transmit covariance constraints in the MIMO BC.
机译:由于高斯多输入多输出(MIMO)广播信道(BC)的特殊结构,相关的容量区域计算和波束成形优化问题通常是非凸的,因此无法直接解决。一种可行的方法是考虑相应的双路多路访问信道(MAC)问题,由于其凸性,这些问题更易于处理。通过BC-MAC信号变换已经建立了常规的BC-MAC对偶性,并且仅适用于MIMO BC受到单个发射和功率约束的情况。一种替代方法是基于minimax对偶性,可以将其应用于和功率约束或每个天线功率约束的情况。本文将常规的BC-MAC对偶性扩展到一般的线性发射协方差约束(LTCC)情况,其中包括和功率和每天线功率约束作为特例。所获得的一般BC-MAC对偶性分别用于解决MIMO BC的容量区域计算和具有多个LTCC的多输入单输出(MISO)BC的波束成形优化。还讨论了这种新的一般BC-MAC对偶性与极小极大对偶性之间的关系,结果表明,一般的BC-MAC对偶性导致问题公式更简单。此外,扩展了一般的BC-MAC对偶性,以处理MIMO BC中非线性发射协方差约束的情况。

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