首页> 外文会议>Signal Processing and Communication Systems, 2009. ICSPCS 2009 >Novel MMSE precoder and decoder designs subject to per-antenna power constraint for uplink multiuser MIMO systems
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Novel MMSE precoder and decoder designs subject to per-antenna power constraint for uplink multiuser MIMO systems

机译:新型MMSE预编码器和解码器设计受制于针对上行链路多用户MIMO系统的每天线功率限制

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Two complementary numerical approaches, the generalized iterative approach (GIA) and the transmit covariance optimization approach (TCOA) are proposed for jointly designing the minimum mean square error (MMSE) precoders and decoders in uplink multiuser multiple-input-multiple-output (MIMO) systems with a per-antenna power constraint. The TCOA always give optimum solution but works only when the source covariance matrices are projection matrices multiplied by the same constant and the rank constraint on the precoders is relaxed. On the other hand, the GIA does not have these restrictions. Furthermore, it is able to deal with arbitrary source covariances and allows arbitrary numbers of data streams. However, under these more general conditions, the GIA results are only guaranteed to be locally optimum. Regarding computational efficiency, the TCOA is more efficient at high transmission power and the GIA is more efficient at low transmission power when both approaches are applicable. Furthermore, the GIA and the TCOA are equivalent and both are optimum if the transmit covariance matrices obtained from the MMSE design are full rank. Numerical results show that the MSE and BER performances of the two approaches with the more practical per-antenna power constraint are very similar to those with the less practical per-user power constraint.
机译:提出了两种互补的数值方法,广义迭代方法(GIA)和发射协方差优化方法(TCOA),用于联合设计上行链路多用户多输入多输出(MIMO)中的最小均方误差(MMSE)预编码器和解码器具有每个天线功率限制的系统。 TCOA始终提供最佳解决方案,但仅在源协方差矩阵是投影矩阵乘以相同常数并且放宽对预编码器的秩约束时才起作用。另一方面,GIA没有这些限制。此外,它能够处理任意源协方差,并允许任意数量的数据流。但是,在这些更一般的条件下,只能保证GIA结果是局部最优的。关于计算效率,当两种方法都适用时,TCOA在高传输功率时效率更高,而GIA在低传输功率时效率更高。此外,如果从MMSE设计获得的发射协方差矩阵为全秩,则GIA和TCOA等效,并且两者都是最佳的。数值结果表明,两种方法的MSE和BER性能在每个天线功率约束条件下更为实用,与在每个用户功率约束条件下较不可行的方法非常相似。

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