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Performance - Complexity Comparison of Receivers for a LTE MIMO–OFDM System

机译:性能-LTE MIMO–OFDM系统接收器的复杂度比较

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摘要

Implementation of receivers for spatial multiplexing multiple-input multiple-output (MIMO) orthogonal-frequency-division-multiplexing (OFDM) systems is considered. The linear minimum mean-square error (LMMSE) and the K-best listsphere detector (LSD) are compared to the iterative successive interference cancellation (SIC) detector and the iterative K-best LSD. The performance of the algorithms is evaluated in 3G long-term evolution (LTE) system. The SIC algorithm is found to perform worse than the K-best LSD when the MIMO channelsare highly correlated, while the performance difference diminishes when the correlation decreases. The receivers are designed for 2X2 and 4X4 antenna systems and three different modulation schemes. Complexity results for FPGA and ASIC implementations are found. A modification to the K-best LSD which increasesits detection rate is introduced. The ASIC receivers are designed to meet the decoding throughput requirements in LTE and the K-best LSD is found to be the most complex receiver although it gives the best reliable data transmission throughput. The SIC receiver has the best performance–complexity tradeoff in the 2X2 system but in the 4X4 case, the K-best LSD is the most efficient. A receiver architecture which could be reconfigured to using a simple or a more complex detector as the channel conditions change would achieve the best performance while consuming the least amount of power in the receiver.
机译:考虑了用于空间复用多输入多输出(MIMO)正交频分复用(OFDM)系统的接收机的实现。将线性最小均方误差(LMMSE)和K最佳列表球检测器(LSD)与迭代连续干扰消除(SIC)检测器和K最佳迭代LSD进行比较。在3G长期演进(LTE)系统中评估了算法的性能。当MIMO信道高度相关时,发现SIC算法的性能比K最佳LSD差,而当相关性降低时,性能差异减小。接收机设计用于2X2和4X4天线系统以及三种不同的调制方案。找到了FPGA和ASIC实现的复杂性结果。引入了对K最佳LSD的修改,以提高其检测率。 ASIC接收器旨在满足LTE中解码吞吐量的要求,尽管K-最佳LSD提供了最佳的可靠数据传输吞吐量,但它却是最复杂的接收器。 SIC接收器在2X2系统中具有最佳的性能-复杂度折衷,但在4X4情况下,K最佳LSD效率最高。当信道条件改变时,可以重新配置为使用简单或更复杂的检测器的接收器体系结构将实现最佳性能,同时在接收器中消耗最少的功率。

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