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Power and Bandwidth Efficient Q-Ary LDPC Coded Partial Response Continuous Phase Modulation

机译:功率和带宽高效Q-Ary LDPC编码的部分响应连续相位调制

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Continuous Phase Modulation (CPM) provides an attractive option for spectral efficient communication systems. Binary low-density parity-check (LDPC) coded CPM can improve power efficiency and attain high error correcting capacity, but the convergence of threshold is still much higher than Shannon limit. In order to improve bit error performance, bandwidth efficiency and reduction of convergence threshold compared to above-mentioned scheme, we employ LDPC codes over GF(q>2) as the outer code. In this paper, the combination of q-ary LDPC coding and partial response CPM (PRCPM) is presented, then the effect of LDPC code length, code rate and iterative number on the performance of the system is studied. In the proposed scheme, q-ary LDPC codes and PRCPM are considered together to improve both error performance and bandwidth efficiencies, and the combination can achieve better trade-off between power efficiency and bandwidth efficiency than binary LDPC coded CPM. Meanwhile, the LDPC codes over GF(q) combined with q-ary CPM can avoid the conversion from bit probability to symbol probability and its inversion in combination of binary LDPC coded q-ary CPM, and improve reliability of information transmission.
机译:连续相位调制(CPM)为频谱高效的通信系统提供了一个有吸引力的选择。二进制低密度奇偶校验(LDPC)编码的CPM可以提高功率效率并获得较高的纠错能力,但是阈值的收敛性仍然远远高于Shannon极限。为了与上述方案相比,提高误码性能,带宽效率和降低收敛阈值,我们在GF(q> 2)上采用LDPC码作为外码。本文提出了q元LDPC编码和部分响应CPM(PRCPM)的结合,然后研究了LDPC码长,码率和迭代次数对系统性能的影响。在提出的方案中,将q元LDPC码和PRCPM一起考虑以提高差错性能和带宽效率,并且与二进制LDPC编码的CPM相比,该组合可以在功率效率和带宽效率之间实现更好的折衷。同时,在GF(q)上结合q进制CPM的LDPC码可以避免二进制LDPC编码q进制CPM结合比特率到符号概率的转换及其倒置,提高了信息传输的可靠性。

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