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Space-Time Optimum Combining for CDMA Overlay for Personal Communications Systems

机译:个人通信系统CDMA覆盖的空时最佳组合

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The requirement to suppress narrowband interferences in CDMA communication stems from the overlay concept, i.e., coexistence of different types of signals in the same frequency band. This paper describes the performance analysis of a direct-sequence (DS) CDMA personal communication system sharing a common spectrum with narrowband microwave radio links in the 1.85 to 1.99 GHz band. The coexistence of these two systems within the same frequency band will improve the overall spectrum efficiency, but will also cause interference to both systems. In this paper it is shown that joint spatial and temporal optimum combining provides an efficient means of improving the performance of the DS-CDMA system through cancellation of the narrowband signal and the co-channel interferences. The proposed space-time architecture provides degrees of freedom for both diversity and interference cancellation. It is shown that the joint space-time receiver is robust with respect to the narrowband interference signal bandwidth and its carrier frequency offset from the DS-CDMA carrier frequency.
机译:抑制CDMA通信中的窄带干扰的要求源于覆盖概念,即在相同频带中不同类型信号的共存。本文介绍了一种直接序列(DS)CDMA个人通信系统的性能分析,该系统与1.85至1.99 GHz频带的窄带微波无线电链路共享一个公共频谱。这两个系统在相同频带内的共存将提高整体频谱效率,但也会对两个系统造成干扰。在本文中表明,联合的空间和时间最佳组合提供了一种通过消除窄带信号和同信道干扰来改善DS-CDMA系统性能的有效手段。所提出的时空架构为分集和干扰消除提供了自由度。结果表明,联合时空接收机在窄带干扰信号带宽及其相对于DS-CDMA载波频率的载波频率偏移方面具有较强的鲁棒性。

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