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Complexity Reduction of MMSE Method for Iterative MIMO Systems

机译:迭代MIMO系统中MMSE方法的复杂性降低。

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The multiple-input multiple-output (MIMO) wireless technology combined with iterative decoding can meet the demands of future needs. The major issue of utilizing the potential of iterative detection and decoding method is its computational complexity due to complex signal detection methods. Another issue is nearly all detection steps are repeated in each iteration. One of the promising detection techniques for multiple-input multiple-output (MIMO) system is linear detector known as minimum mean squared error (MMSE) which utilizes soft information feedback from turbo decoder for cancellation steps can be employed due to lower complexity compared to several existing methods. In this paper, we apply an approach which can reduce the complexity of soft interference cancellation-minimum mean squared error (SIC-MMSE) signal detection method without error rate performance degradation. We observe that soft information of few transmitted symbol reach at very high reliability, and thus an approximation approach can be used to perform interference cancellation step for these symbols. Simulation results are presented to demonstrate the bit error rate performance of the proposed signal detection method.
机译:结合迭代解码的多输入多输出(MIMO)无线技术可以满足未来的需求。利用潜在的迭代检测和解码方法的主要问题是由于复杂的信号检测方法而导致的计算复杂性。另一个问题是,几乎所有检测步骤都在每次迭代中重复进行。用于多输入多输出(MIMO)系统的一种有前途的检测技术是被称为最小均方误差(MMSE)的线性检测器,该方法利用了来自Turbo解码器的软信息反馈进行抵消步骤,因为与几种方法相比,其复杂度较低现有方法。在本文中,我们采用了一种可以降低软干扰消除最小均方误差(SIC-MMSE)信号检测方法的复杂度而又不降低误码率性能的方法。我们观察到,很少传输符号的软信息达到了很高的可靠性,因此可以使用一种近似方法对这些符号执行干扰消除步骤。仿真结果表明了该信号检测方法的误码率性能。

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