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On the application of factor graphs and the sum-product algorithm to ISI channels

机译:论因子图和求和积算法在ISI通道中的应用

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In this paper, based on the application of the sum-product (SP) algorithm to factor graphs (FGs) representing the joint a posteriori probability (APP) of the transmitted symbols, we propose new iterative soft-input soft-output (SISO) detection schemes for intersymbol interference (ISI) channels. We have verified by computer simulations that the SP algorithm converges to a good approximation of the exact marginal APPs of the transmitted symbols if the FG has girth at least 6. For ISI channels whose corresponding FG has girth 4, the application of a stretching technique allows us to obtain an equivalent girth-6 graph. For sparse ISI channels, the proposed algorithms have advantages in terms of complexity over optimal detection schemes based on the Bahl-Cocke-Jelinek-Raviv (BCJR) algorithm. They also allow a parallel implementation of the receiver and the possibility of a more efficient complexity reduction. The application to joint detection and decoding of low-density parity-check (LDPC) codes is also considered and results are shown for some partial-response magnetic channels. Also in these cases, we show that the proposed algorithms have a limited performance loss with respect to that can be obtained when the optimal "serial" BCJR algorithm is used for detection. Therefore, for their parallel implementation, they represent a favorable alternative to the modified "parallel" BCJR algorithm proposed in the literature for the application to magnetic channels.
机译:在本文中,基于总和积(SP)算法在表示传输符号联合后验概率(APP)的因子图(FG)上的应用,我们提出了新的迭代软输入软输出(SISO)码间干扰(ISI)信道的检测方案。我们已经通过计算机仿真验证了,如果FG的周长至少为6,则SP算法收敛到所传输符号的精确边际APP的良好近似值。对于其FG的周长为4的ISI信道,应用扩展技术可以我们获得一个等效的周长6图。对于稀疏的ISI信道,与基于Bahl-Cocke-Jelinek-Raviv(BCJR)算法的最佳检测方案相比,所提出的算法在复杂度方面具有优势。它们还允许并行实现接收器,并有可能更有效地降低复杂度。还考虑了在低密度奇偶校验(LDPC)码的联合检测和解码中的应用,并显示了部分响应磁通道的结果。同样在这些情况下,我们表明,相对于使用最佳“串行” BCJR算法进行检测时可获得的性能损失,所提出的算法具有有限的性能损失。因此,对于它们的并行实现,它们代表了文献中提出的修改后的“并行” BCJR算法的良好替代方案,可应用于磁通道。

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