首页> 外文会议>Global Telecommunications Conference, 2002. GLOBECOM '02. IEEE >Low-complexity iterative per-antenna MAP equalizer for MIMO frequency selective fading channels
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Low-complexity iterative per-antenna MAP equalizer for MIMO frequency selective fading channels

机译:用于MIMO频率选择性衰落信道的低复杂度迭代每天线MAP均衡器

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We consider the equalization of a (N/sub t/, N/sub r/) MIMO, L + 1-tap fading channel. We first evaluate the performance of a full complexity, vector MAP equalizer which runs the forward/backward algorithm on a trellis which has M(N/sub t//spl times/L) states with M(N/sub t/) transitions from each state when an M-ary constellation is used. This MAP equalizer achieves the N/sub r//spl times/(L+1) diversity benefit while realizing N/sub t//spl times/log/sub 2/(M) bits/sec/Hz. We then propose a novel iterative per-antenna MAP(PAMAP) approach which can be used (1) to reduce the complexity and (2) to achieve the full diversity order N/sub t//spl times/N/sub r//spl times/(L+1) at the rate of log/sub 2/(M) bits/sec/Hz. The proposed equalizer consists of a probabilistic "signal separator" and a bank of N/sub t/ PAMAPs each having M/sup L/ states with M transitions from each state. The signal separator and the PAMAPs exchange extrinsic information during iterations. Simulation results indicate that the proposed receiver closely achieves the performance of the full complexity MAP within 2 to 3 iterations. The proposed scheme saves a significant amount of complexity in uncoded systems with a large number of transmit antennas and a high modulation order. In coded systems, the PAMAP scheme becomes more beneficial when iterative equalization and decoding is used.
机译:我们考虑(N / sub t /,N / sub r /)MIMO,L + 1抽头衰落信道的均衡。我们首先评估一个全复杂度矢量MAP均衡器的性能,该均衡器在具有M(N / sub t // spl times / L)个状态(其中M(N / sub t /)个转换为)的网格上运行前向/后向算法使用Mary星座时的每个状态。该MAP均衡器在实现N / sub t // spl次/ log / sub 2 /(M)位/秒/ Hz的同时,实现了N / sub r // spl次/(L + 1)分集的好处。然后,我们提出了一种新颖的基于天线的迭代MAP(PAMAP)迭代方法,该方法可用于(1)降低复杂度,(2)实现全分集阶数N / sub t // spl次/ N / sub r // spl次/(L + 1)以log / sub 2 /(M)位/秒/ Hz的速率。提出的均衡器由一个概率“信号分离器”和一组N / sub t / PAMAP组成,每个N / sub t / PAMAP具有M / sup L /个状态,每个状态有M个跃迁。信号分离器和PAMAP在迭代过程中交换外部信息。仿真结果表明,所提出的接收器在2至3次迭代中可以完全实现全复杂度MAP的性能。所提出的方案在具有大量发射天线和高调制阶数的未编码系统中节省了大量的复杂性。在编码系统中,当使用迭代均衡和解码时,PAMAP方案变得更加有益。

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