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A Class of Errorless Codes for Overloaded Synchronous Wireless and Optical CDMA Systems

机译:用于过载同步无线和光CDMA系统的一类无错码

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In this paper, we introduce a new class of codes for overloaded synchronous wireless and optical code-division multiple-access (CDMA) systems which increases the number of users for fixed number of chips without introducing any errors. Equivalently, the chip rate can be reduced for a given number of users, which implies bandwidth reduction for downlink wireless systems. An upper bound for the maximum number of users for a given number of chips is derived. Also, lower and upper bounds for the sum channel capacity of a binary overloaded CDMA are derived that can predict the existence of such overloaded codes. We also propose a simplified maximum likelihood method for decoding these types of overloaded codes. Although a high percentage of the overloading factorThe percentage of the number of users divided by the number of chips minus 1, i.e., $(n/m-1)$. degrades the system performance in noisy channels, simulation results show that this degradation is not significant. More importantly, for moderate values of $E_{b}/N_{0}$ (in the range of 6–10 dB) or higher, the proposed codes perform much better than the binary Welch bound equality sequences.
机译:在本文中,我们为过载同步无线和光码分多址(CDMA)系统引入了一类新的代码,该代码增加了固定数量芯片的用户数量,而没有引入任何错误。同样,对于给定数量的用户,可以降低码片速率,这意味着下行链路无线系统的带宽减少。得出给定数量的芯片的最大用户数上限。同样,得出二进制超载CDMA的总信道容量的下限和上限,其可以预测这种超载码的存在。我们还提出了一种简化的最大似然方法,用于解码这些类型的重载代码。尽管过载系数的百分比很高用户数量的百分比除以芯片数减去1,即$(n / m-1)$。降低了噪声信道中的系统性能,仿真结果表明这种降低并不明显。更重要的是,对于$ E_ {b} / N_ {0} $的中等值(6-10 dB范围)或更高,建议的代码比二进制Welch约束相等序列好得多。

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