Space-time coded transmit diversity in multi-satellite UMTS

L. Mucchi, R. Tesi, D. Tujkovic, E. Kunnari
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引用次数: 4

Abstract

The paper analyzes and compares the performance of some space-time codes applied to the forward link of a WCDMA multi-satellite UMTS environment. Space-time trellis codes (STTrC) have been considered as a first comparison with already implemented transmit diversity schemes, such as maximal ratio combining (MRC), space-time block codes (STBC) and selection transmit diversity (STD). Furthermore, in order to improve their performance, convolutional codes (CC) have been added as outer encoders to MRC, STBC and STD, while for STTrC, a CC plus iterative decoding has been considered in order to perform space-time turbo coded modulation (STTuCM). All these schemes have been implemented in a multi-satellite environment. An intra- and inter-cell interference model is presented in order to evaluate the performance of these schemes for a loaded system. The effect of a feedback delay and errors in channel state identification have been introduced in order to have a real behavior of closed-loop schemes.
多卫星UMTS的空时编码发射分集
分析比较了几种空时码在WCDMA多星UMTS环境下的前向链路性能。空时格码(STTrC)被认为是与已经实现的最大比组合(MRC)、空时分组码(STBC)和选择发射分集(STD)等传输分集方案的第一个比较。此外,为了提高它们的性能,在MRC、STBC和STD中增加了卷积码(CC)作为外部编码器,而对于STTrC,考虑了CC加迭代解码以实现时空turbo编码调制(STTuCM)。这些方案都已在多卫星环境下实现。为了评估这些方案在加载系统中的性能,提出了小区内和小区间的干扰模型。为了使闭环方案具有真实的性能,引入了反馈延迟和误差对信道状态识别的影响。
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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