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Multilevel pulse-position modulation based on balanced incomplete block designs

机译:基于平衡不完整模块设计的多级脉冲位置调制

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In this paper, two new modulation schemes using multilevel pulse-position modulation (PPM) for application in unipolar optical wireless systems are presented. Balanced incomplete block designs (BIBD) are used for constructing the symbol alphabets. Each symbol is obtained by combining multiple codewords of a BIBD code. In one scheme the symbols have equal energies, and therefore, no threshold is needed to make a decision on the received signal. The other modulation has better performance yet higher complexity. Since cyclic BIBDs are used for constructing the symbols, the transmitters and receivers have simple structures, and can be implemented using shift registers. These schemes can achieve high spectral-efficiencies, and are therefore suitable for systems with bandlimited sources or highly dispersive channels, where intersymbol interference (ISI) has a significant impact on the performance. We also show that using the same receiver structure, the constellation size can be increased by including the complements of the codewords. The performance of the proposed schemes are compared to other modulation schemes for both LED-based non-dispersive and dispersive free-space optical (FSO) systems.
机译:在本文中,提出了两种新的使用多级脉冲位置调制(PPM)的调制方案,用于单极光学无线系统。平衡不完整块设计(BIBD)用于构建符号字母。每个符号是通过组合BIBD码的多个码字获得的。在一种方案中,符号具有相等的能量,因此不需要阈值来对接收信号做出决定。其他调制具有更好的性能,但复杂度更高。由于循环BIBD用于构造符号,因此发送器和接收器具有简单的结构,可以使用移位寄存器来实现。这些方案可实现高频谱效率,因此适用于带间干扰源或高色散信道的系统,其中符号间干扰(ISI)对性能有重大影响。我们还表明,使用相同的接收器结构,可以通过包括码字的补码来增加星座图的大小。针对基于LED的非色散和色散自由空间光学(FSO)系统,将拟议方案的性能与其他调制方案进行了比较。

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