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A low-complexity soft output detection algorithm for spatial modulation systems

机译:用于空间调制系统的低复杂度软输出检测算法

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Spatial modulation (SM) is a promising multiple-input multiple-output (MIMO) transmission technology, which exploits the indices of transmit antennas to encode information into the spatial dimension and needs less radio frequency chains. To detect the transmitted information, the maximum likelihood (ML) algorithm is often adopted which has high computational complexity. Some low-complexity detection algorithms only consider hard-decision cases with no channel coding. In this paper, a low-complexity soft output detection algorithm is proposed for coded spatial modulation systems. Its computational complexity doesn't increase with the modulation order and hence much lower than the soft output ML detection algorithm. Simulation results demonstrate that the bit error rate (BER) performance is near to the ML detection with obvious complexity reduction. By sorting the detection metrics and selecting less transmit antenna indices as search candidates to compute soft bit information, further reduction of computational complexity could be obtained.
机译:空间调制(SM)是一种有前途的多输入多输出(MIMO)传输技术,该技术利用发射天线的索引将信息编码为空间维度,并且需要较少的射频链。为了检测所传输的信息,通常采用具有较高计算复杂度的最大似然(ML)算法。一些低复杂度的检测算法仅考虑没有信道编码的硬决策情况。本文针对编码空间调制系统,提出了一种低复杂度的软输出检测算法。它的计算复杂度不会随调制阶数增加,因此比软输出ML检测算法要低得多。仿真结果表明,误码率(BER)性能接近ML检测,并且复杂度明显降低。通过对检测指标进行排序并选择较少的发射天线索引作为搜索候选,以计算软比特信息,可以进一步降低计算复杂度。

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