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Capacity of synchronous coded DS SFH and FFH spread-spectrum multiple-access for wireless local communications

机译:无线本地通信的同步编码DS SFH和FFH扩频多址接入能力

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摘要

The performance of synchronous spread-spectrum multiple-access (SSMA) communications based on direct-sequence (DS), slow frequency-hopped (SFH), and fast frequency-hopped (FFH) systems for wireless local communications of micro-cellular personal communications is analyzed. Using an indoor multipath fading channel model with clusters of arriving rays, we investigate multiuser DS systems with RAKE and diversity reception by selection combining (SC), multiuser SFH systems with equal-gain (EG) diversity reception, and multiuser FFH systems with correlated EG and self-normalization (SN) combining techniques. Reed-Solomon codes are considered to further improve the system performance. Given a fixed available bandwidth with narrow band interference (NBI), capacities and packet error rates are determined under various system configurations. Total capacities of hybrid frequency-division multiple-access (FDMA)/SSMA (DS and SFH) systems are compared with those of wide-band SSMA systems. For high data rate communications, wide-band DS-SSMA systems have larger capacities than hybrid FDMA/DS-SSMA systems. For low data rate communications, a capacity comparison between wide-band DS-SSMA and hybrid FDMA/DS-SSMA systems depends on fading statistics. Hybrid FDMA/SFH-SSMA systems have larger capacities than wide-band DS-SSMA systems, FFH-SSMA systems could not provide satisfactory performance due to correlation among hopping bands.
机译:基于直接序列(DS),慢跳频(SFH)和快跳频(FFH)系统的微基站个人通信无线本地通信的同步扩频多址(SSMA)通信的性能被分析。使用具有到达光线簇的室内多径衰落信道模型,我们通过选择组合(SC),具有等增益(EG)分集接收的多用户SFH系统以及具有相关EG的多用户FFH系统,研究了具有RAKE和分集接收的多用户DS系统和自规范化(SN)组合技术。 Reed-Solomon码被认为可以进一步提高系统性能。给定具有窄带干扰(NBI)的固定可用带宽,将在各种系统配置下确定容量和分组错误率。将混合频分多址(FDMA)/ SSMA(DS和SFH)系统的总容量与宽带SSMA系统的总容量进行了比较。对于高数据速率通信,宽带DS-SSMA系统比混合FDMA / DS-SSMA系统具有更大的容量。对于低数据速率通信,宽带DS-SSMA与混合FDMA / DS-SSMA系统之间的容量比较取决于衰落统计。混合FDMA / SFH-SSMA系统比宽带DS-SSMA系统具有更大的容量,FFH-SSMA系统由于跳频带之间的相关性而无法提供令人满意的性能。

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