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A complementary codes based CDMA architecture for future wideband mobile communications

机译:基于CDMA架构的互补代码,用于将来宽带移动通信

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This article proposes a new CDMA architecture based on orthogonal complete complementary codes, characterized by its innovative spreading modulation scheme and its up-and down-links signaling design. There are several advantages of the proposed CDMA architecture if compared with conventional CDMA systems pertinent to current 2G and SC standards. Firstly, it can achieve n spreading efficiency (SE) close to one (the SF is defined as the amount of information bit(s) conveyed by each chip); whereas the SE's of the conventional CDMA systems equal 1/N, where N denotes the length of spreading codes. Secondly, it offers a multiple access interference (MAI) free operation in both up- and down-link transmissions in MAI-AWON channels, which can significantly reduce co-channel interference responsible for capacity decline of a CDMA system. Thirdly, the proposed CDMA architecture in particular suits multi-rate transmission due to the use or offset stacked spreading modulation technique, which simplifies rate-matching relevant to multimedia services and facilitates asymmetric traffic in up- and downlink transmissions for IP-based applications. This paper gives a evaluation study or the proposed CDMA architecture using computer simulation, based on which it is concluded that the proposed CDMA architecture has a great potential for applications in future wideband mobile communications beyond 30.
机译:本文提出了一种基于正交完整互补码的新CDMA架构,其特征在于其创新的传播调制方案及其上下链路信号设计。有如果与相关的目前的2G和SC标准常规的CDMA系统相比,所提出的CDMA体系结构的几个优点。首先,它可以实现N扩散效率(SE)接近之一(SF被定义为信息比特的(一个或多个的量)通过每个芯片传送);虽然SE的传统CDMA系统等于1 / N,其中N表示扩展码的长度。其次,它提供了在MAI-阿沃频道上调和下行链路传输,这可以减少显著负责CDMA系统的容量下降的同信道干扰的多址干扰(MAI)的分类操作。第三,在由于使用或特定服多速率传输所提出的CDMA体系结构偏移堆栈扩展调制技术,这简化了速率匹配相关的多媒体服务,并促进在上行和下行链路传输进行基于IP的应用的非对称业务。本文给出了一个评估研究或建议的CDMA架构采用计算机模拟,在此基础上得出的结论是所提出的CDMA架构对未来宽带应用的移动通信超过30的巨大潜力。

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