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A General Algorithm for Biorthogonal Functions and Performance Analysis of Biorthogonal Scramble Modulation System

机译:双正交函数的通用算法及双正交加扰调制系统的性能分析

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Applying the theorems of Mobius inverse and Dirichlet inverse, a general algorithm to obtain biorthogonal functions based on generalized Fourier series analysis is introduced. In the algorithm, the orthogonal function can be not only Fourier or Legendre series, but also can be any one of all orthogonal function systems. These kinds of biorthogonal function sets are used as scramble signals to construct biorthogonal scramble modulation (BOSM) wireless transmission systems. In a BOSM system, the transmitted signal has significant security performance. Several different BOSM and orthogonal systems are compared on aspects of BER performance and spectrum efficiency, simulation results show that the BOSM systems based on Chebyshev polynomial and Legendre polynomial are better than BOSM system based on Fourier series, also better than orthogonal MCM and OFDM systems.
机译:利用Mobius逆和Dirichlet逆定理,介绍了一种基于广义傅里叶级数分析的双正交函数求取的通用算法。在该算法中,正交函数不仅可以是傅里叶级数或勒让德级数,而且可以是所有正交函数系统中的任何一个。这些种类的双正交功能集用作加扰信号,以构建双正交加扰调制(BOSM)无线传输系统。在BOSM系统中,传输的信号具有显着的安全性能。从BER性能和频谱效率方面比较了几种不同的BOSM和正交系统,仿真结果表明,基于Chebyshev多项式和Legendre多项式的BOSM系统优于基于Fourier级数的BOSM系统,也优于正交MCM和OFDM系统。

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