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首页> 外文期刊>Photonics Technology Letters, IEEE >Maximum Achievable Constrained Power Efficiencies of MPPM- $L$ QAM Techniques
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Maximum Achievable Constrained Power Efficiencies of MPPM- $L$ QAM Techniques

机译:MPPM- $ L $ QAM技术的最大可实现的受限功率效率

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摘要

The maximum achievable power efficiency of a multipulse pulse-position modulation--ary quadrature-amplitude modulation (MPPM-QAM) technique under a constraint on its spectral efficiency is obtained. Variations to this technique that include polarization multiplexing and switching are considered as well. A simple characterization to the maximum achievable power efficiency is derived under the above constraint. Our results are compared with that of traditional QAM techniques under same constraints. The results reveal that at spectral efficiency constraints of 1.5, 2.5, and 3.5 bit/sym/pol, the power efficiency of MPPM-QAM technique is better than that of traditional QAM technique by , 2.2, and 1.4 dB, respectively.
机译:获得了在其频谱效率约束下的多脉冲脉冲位置调制-二次正交幅度调制(MPPM-QAM)技术可实现的最大功率效率。还考虑了该技术的变体,包括偏振复用和切换。在上述约束条件下,可以得出最大可实现功率效率的简单特征。在相同约束下,我们的结果与传统QAM技术进行了比较。结果表明,在频谱效率约束为1.5、2.5和3.5 bit / sym / pol时,MPPM-QAM技术的功率效率分别比传统QAM技术高出2.2 dB和1.4 dB。

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