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ABC Algorithm-Based Subblocks Set Design for OFDM With All Index Modulation

机译:基于ABC算法的SubBlocks设置了OFDM的设计,具有所有索引调制

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摘要

In this letter, we propose a low complexity artificial bee colony (ABC) algorithm based subblocks set design to maximize the diversity gain of orthogonal frequency division multiplexing with all index modulation (OFDM-AIM), which is inspired by OFDM with index modulation (OFDM-IM). Unlike the conventional OFDM-IM, where constellation points of the M-ary signals are fixed, ABC aided OFDM-AIM (ABC-OFDM-AIM) scheme has flexible subcarrier constellation points to enhance the diversity gain, which ensures better BER performance. Also, a parallel ABC (PABC) algorithm, which has a more powerful search strategy than the ABC algorithm, is proposed (PABC-OFDM-AIM) to further enhance the diversity gain of the OFDM-AIM. Performances of the proposed schemes have been tested according to the average bit error probability (ABEP), search complexity, and BER performance criteria. Simulation results show that the proposed schemes outperform other OFDM-IM based schemes, especially in the improvement of BER.
机译:在这封信中,我们提出了一种低复杂性的人造蜂殖民地(ABC)算法基于SubBlocks集合设计,最大化了与所有索引调制(OFDM-AIM)的正交频分复用的分集增益,这是由OFDM具有索引调制的启发(OFDM -我是)。与传统的OFDM-IM不同,其中M-ARY信号的星座点是固定的,ABC ADDM-AIM(ABC-OFDM-AIM)方案具有灵活的子载波星座点,以增强分集增益,这确保了更好的BER性能。此外,提出了一种与ABC算法具有比ABC算法更强大的搜索策略的并联ABC(PABC)算法(PABC-OF-AIM),以进一步增强OFDM-AIM的分集增益。已经根据平均误码概率(ABEP),搜索复杂性和BER性能标准进行了所提出的方案的性能。仿真结果表明,建议的方案优于其他基于OFDM-IM的方案,特别是在改善BER中。

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