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Efficient User, Bit and Power Allocation for Adaptive Multiuser MIMO-OFDM with Low Signalling Overhead

机译:具有低信令开销的自适应多用户MIMO-OFDM的高效用户,位和功率分配

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摘要

Block diagonalization (BD) of multiple users combined with coordinated transmitter-receiver processing and scheduling between users is a simple and straightforward method to utilize the available spatial degrees of freedom in downlink multi-user (MU) multiple-input multiple-output (MIMO) channel for increasing the system throughput. In this paper, an efficient user, bit and power allocation algorithm with low signalling overhead (LSO) is proposed for maximizing the downlink spectral efficiency of the adaptive multiuser MIMO-OFDM system with BD decomposition. A greedy allocation algorithm with Hughes-Hartogs loading is also proposed and used as a reference for LSO algorithm. For a small number of users, the performance of LSO algorithm is shown to be very close to the greedy algorithm. Iterative BD decomposition with a single reiteration is shown to provide significant gains to the non-iterative solution. Linear minimum mean square error (LMMSE) filter is applied at the receiver to suppress the remaining multi access interference from incomplete orthogonalization together with a simple compensation algorithm with low rate scalar feedback to the transmitter. The proposed MU MIMO-OFDM system is also shown to be robust against imperfect channel state information at the transmitter, providing always superior performance to a time switched single user MIMO-OFDM solution.
机译:多个用户的块对角化(BD)与协调发射器 - 接收器处理和用户之间的调度是一种简单而简单的方法,用于利用下行链路多用户(MU)多输入多输出(MIMO)中的可用空间自由度增加系统吞吐量的通道。在本文中,提出了一种具有低信令开销(LSO)的有效用户,比特和功率分配算法,用于最大化具有BD分解的自适应多用户MIMO-OFDM系统的下行链路谱效率。还提出了一种贪婪的分配算法,并用作LSO算法的参考。对于少数用户,LSO算法的性能显示为非常接近贪婪算法。显示迭代BD分解,具有单一重新检测,以提供对非迭代解决方案的显着增益。接收器应用线性最小均方误差(LMMSE)滤波器,以抑制与发射器的低速率标量反馈的简单补偿算法一起抑制来自不完整正交化的剩余多功能干扰。所提出的MU MIMO-OFDM系统也被证明对发送器处的不完美信道状态信息具有鲁棒,为时间交换单用户MIMO-OFDM解决方案提供始终卓越的性能。

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