Adaptive Equalization at HSDPA Symbol Level

A. Bastug, A. Ancora, D. Slock
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引用次数: 1

Abstract

Although a simple solution, pilot-symbols-trained LMS algorithm is not capable of tracking fast varying channels in UMTS FDD downlink due to insufficient adaptation rate. Pilot-chips-trained LMS adaptation is on the other hand much more prone to noise. These two phenomena manifest themselves in the two components of the adaptation excess mean square (EMSE). A compromise can be found by considering HSDPA symbol-level Griffiths or decision-directed equalization. These two methods enable adapting 16 times more frequently than the pilot-symbols-aided adaptation. They are also attractive for implementation since a modular approach can be adopted by exploiting either one or more of the available HSDPA code domains depending on the instantaneous channel quality and the performance requirements.
HSDPA符号级的自适应均衡
导频符号训练LMS算法虽然是一种简单的解决方案,但由于自适应率不足,无法在UMTS FDD下行中跟踪快速变化的信道。另一方面,导航芯片训练的LMS适应更容易受到噪声的影响。这两种现象都表现在自适应超均方(EMSE)的两个分量上。通过考虑HSDPA符号级Griffiths或决策导向均衡,可以找到一种折衷方案。这两种方法的适应频率是导频符号辅助适应的16倍。它们在实现方面也很有吸引力,因为根据瞬时信道质量和性能要求,可以采用模块化方法,利用一个或多个可用的HSDPA码域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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