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A Two-Stage Capacity-Achieving Demodulation/Decoding Method for Random Matrix Channels

机译:随机矩阵信道的两阶段容量实现解调/解码方法

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Iterative processing for linear matrix channels, aka turbo equalization, turbo demodulation, or turbo code-division multiple access (CDMA), has traditionally been addressed as the concatenation of conventional error control codes with the linear (matrix) channel. However, in several situations, such as CDMA, multiple-input–multiple-output (MIMO) channels, orthogonal frequency-division multiplexing (OFDM), and intersymbol–interference (ISI) channels, the channel itself either contains inherent signal redundancy or such redundancy can readily be introduced at the transmitter. For such systems, iterative demodulation of the linear channel exploiting this redundancy using simple iterative cancellation demodulators, followed by conventional feedforward error control decoding, provides a low-complexity, but extremely efficient decoding alternative. This two-stage demodulator/decoder outperforms more complex turbo CDMA methods for equal power modes (users). Furthermore, it is shown that arbitrary numbers of modes can be supported if an unequal power distribution is adopted. These power distributions are nested, which means that additional modes can be added without disturbing an existing mode population. The main result shows that these nested power distributions enable the two-stage receiver to approach the Shannon capacity of the channel to within less than one bit for any signal-to-noise ratio (SNR).
机译:传统上,线性矩阵通道的迭代处理(即Turbo均衡,Turbo解调或Turbo码分多址(CDMA))已作为传统的错误控制码与线性(矩阵)通道的连接而解决。但是,在某些情况下,例如CDMA,多输入多输出(MIMO)通道,正交频分多路复用(OFDM)和符号间干扰(ISI)通道,通道本身要么包含固有的信号冗余,要么具有冗余可以很容易地在发射机处引入。对于这样的系统,利用简单的迭代消除解调器利用这种冗余对线性信道进行迭代解调,然后进行常规的前馈误差控制解码,提供了低复杂度但非常有效的解码选择。对于等功率模式(用户),该两级解调器/解码器优于更复杂的Turbo CDMA方法。此外,示出了如果采用不相等的功率分配,则可以支持任意数量的模式。这些功率分布是嵌套的,这意味着可以添加其他模式而不会干扰现有的模式填充。主要结果表明,对于任何信噪比(SNR),这些嵌套的功率分布都使两级接收器能够将信道的Shannon容量控制在小于一位的范围内。

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