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Bandwidth-efficient coded modulation with optimized linear partial-response signals

机译:具有优化的线性部分响应信号的带宽有效编码调制

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We study the design of optimal signals for bandwidth-efficient linear coded modulation. Previous results show that for linear channels with intersymbol interference (ISI), reduced-search decoding algorithms have near-maximum-likelihood error performance, but with much smaller complexity than the Viterbi decoder. Consequently, the controlled ISI introduced by a lowpass filter can be practically used for bandwidth reduction. Such spectrum shaping filters comprise an explicit coded modulation, for which we seek the optimal design. We simultaneously constrain the bandwidth and maximize the minimum Euclidean distance between signals. We show that under quite general assumptions the problem can be formulated as a linear program, and solved with well-known efficient optimization techniques. Numerical results are presented, and the performance of the optimal signals, measured by their combined bandwidth and noise immunity, is analyzed. The new codes are comparable to set-partition (TCM) trellis codes. Tests of an M-algorithm decoder confirm this and show that the performance occurs at small detection complexity.
机译:我们研究带宽有效的线性编码调制的最佳信号设计。先前的结果表明,对于具有符号间干扰(ISI)的线性信道,精简搜索解码算法具有接近最大似然的错误性能,但复杂度比维特比解码器小得多。因此,由低通滤波器引入的受控ISI可以实际用于带宽减少。这种频谱整形滤波器包括显式编码调制,为此我们寻求最佳设计。我们同时限制带宽并使信号之间的最小欧几里得距离最大化。我们表明,在相当普遍的假设下,问题可以表述为线性程序,并可以通过众所周知的高效优化技术来解决。给出了数值结果,并分析了最佳信号的性能,这些信号是通过组合带宽和抗噪能力来衡量的。新代码与集分区(TCM)网格代码相当。 M算法解码器的测试证实了这一点,并表明该性能在较小的检测复杂度下即可实现。

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