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Power-Imbalanced Low-Density Signatures (LDS) From Eisenstein Numbers

机译:爱森斯坦数的功率不平衡低密度签名(LDS)

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As a special case of sparse code multiple access (SCMA), low-density signatures based code-division multiple access (LDS-CDMA) was widely believed to have worse error rate performance compared to SCMA. With the aid of Eisenstein numbers, we present a novel class of LDS which can achieve error rate performances comparable to that of SCMA in Rayleigh fading channels and better performances in Gaussian channels. This is achieved by designing power-imbalanced LDS such that variation of user powers can be seen both in every chip window and the entire sequence window. As LDS-CDMA is more flexible in terms of its backwards compatibility, our proposed LDS are a promising sequence candidate for dynamic machine-type networks serving a wide range of communication devices.
机译:作为稀疏代码多址(SCMA)的特例,与SCMA相比,基于低密度签名的码分多址(LDS-CDMA)被普遍认为具有较差的错误率性能。借助爱森斯坦数,我们提出了一种新型的LDS,它可以在瑞利衰落信道中实现与SCMA相当的误码率性能,并在高斯信道中实现更好的性能。这是通过设计功率不平衡的LDS来实现的,从而可以在每个芯片窗口和整个序列窗口中看到用户功率的变化。由于LDS-CDMA在向后兼容性方面更加灵活,因此我们提出的LDS是用于服务于各种通信设备的动态机器类型网络的有希望的序列候选者。

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