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System performance gain by interference cancellation in WCDMA dedicated and high-speed downlink channels

机译:通过WCDMA专用和高速下行链路信道中的干扰消除来提高系统性能

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摘要

A large number of the existing and planned 3G networks rely on the 3GPP WCDMA standard. Since the downlink of WCDMA systems is usually interference limited, interference cancellation algorithms that reduce the interference on the desired signal can significantly improve the system capacity. The system-level performance gain that can be achieved by interference cancellation on the terminal side is investigated. Two downlink channels are considered: the dedicated downlink channel, which is already part of the WCDMA standard, and the new high-speed downlink channel for packet-data support, which will be part of release 5 of the WCDMA standard. In the analysis, four receiver classes are compared: the standard RAKE receiver, a RAKE receiver with pilot subtraction, a linear MMSE equalizer, and a non-linear iterative successive cancellation algorithm. The resulting performance gains and the necessary implementation complexity are discussed.
机译:大量现有和计划中的3G网络都依赖于3GPP WCDMA标准。由于WCDMA系统的下行链路通常受干扰限制,因此减少对所需信号的干扰的干扰消除算法可以显着提高系统容量。研究了可以通过消除终端端的干扰来实现的系统级性能增益。考虑了两个下行链路信道:专用下行链路信道(已成为WCDMA标准的一部分)和新的用于分组数据支持的高速下行链路信道(将成为WCDMA标准的版本5的一部分)。在分析中,比较了四种接收器类别:标准RAKE接收器,带导频减法的RAKE接收器,线性MMSE均衡器和非线性迭代逐次消除算法。讨论了由此带来的性能提升和必要的实现复杂性。

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