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Intra-symbol SMSE waveform design amidst coexistent 802.11 OFDM signals

机译:符号内部SMSE波形设计在共存802.11 OFDM信号中

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Spectrally Modulated, Spectrally Encoded (SMSE) waveform designs are optimized in a coexistent environment by independently selecting intra-symbol subcarrier power and modulation order. As demonstrated previously with Direct Sequence Spread Spectrum (DSSS) primary users (PU), SMSE waveform applicability is extended here using a coexistent environment containing multiple OFDM-based 802.11 PU signals. By exploiting statistical knowledge of PU spectral and temporal behavior, the SMSE system throughput (bits/second) can be maximized while adhering to SMSE and PU bit error rate (BER) constraints with mutual coexistent interference limited to manageable levels. Results for the SMSE-802.11 coexistent scenario demonstrate that significant performance improvement is available when the SMSE signal dynamically adapts to PU transmissions.
机译:通过独立地选择符号汇流载波功率和调制顺序,在共存环境中优化光谱调制的频谱编码(SMSE)波形设计。如前所述使用直接序列扩频(DSSS)主用户(PU),SMSE波形适用性使用包含基于多个OFDM的802.11 PU信号的共存环境扩展。通过利用PU光谱和时间行为的统计知识,可以最大限度地最大化SMSE系统吞吐量(比特/秒),同时遵守与可管理级别限制的相互共存干扰的SMSE和PU比特错误率(BER)约束。 SMSE-802.11的结果表明,当SMSE信号动态适应PU传输时,有显着的性能改进。

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