用于高比特率的DS-CDMA多级路径间干扰消除器

L. Krikidis, J. Danger, L. Naviner
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引用次数: 3

摘要

第三代(3G)移动通信系统可以在多径衰落信道上提供高数据速率和频谱效率。为了使其可行,他们在保持固定带宽的同时使用低处理增益。对于最低的扩频增益,多址干扰(MAI)可以被认为是低的,径间干扰(IPI)成为传统RAKE接收机性能下降的主要因素。我们采用干扰消除的方法,一种众所周知的多用户检测技术,以减轻在高数据速率连接的单用户直接序列码分多址(DS-CDMA)系统中自干扰的影响。我们引入了一种干扰消除器(IC),其目的是通过再生,然后减去嵌入在初始相关器输出中的干扰信号的估计和信道估计来提高系统性能。通过在多阶段方案中重复此操作,我们可以在高数据速率下显着提高系统性能。此外,我们提出了一种重复抵消方案的架构,并讨论了其计算的功率需求。
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A DS-CDMA multi-stage inter-path interference canceller for high bit rates
Third generation (3G) mobile communication systems can provide high data rates with spectrum efficiency over multipath fading channels. In order to make that feasible, they use low processing gains while maintaining a fixed bandwidth. For the lowest spreading gains, multiple access interference (MAI) can be considered low and inter-path interference (IPI) becomes the principal factor for performance degradation of the conventional RAKE receiver. We adapt the approach of interference cancellation, a well-known technique for multiuser detection, to mitigate the effects of self-interference in a single-user direct sequence code division multiple access (DS-CDMA) system over high data rate connections. We introduce an interference canceller (IC) which aims to improve system performance by regenerating, and then subtracting, estimates of the interfering signals, embedded in the initial correlator output, and channel estimation. By repeating this operation in a multi-stage scheme, we can improve system performance significantly at high data rates. Also, we propose an architecture for this repeating cancellation scheme and we discuss its calculated power requirements.
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