Experiments on fast sector selection with entire-bandwidth assignment in forward link for OFCDM broadband packet wireless access

A. Morimoto, S. Abeta, M. Sawahashi
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Abstract

This work presents experimental results on fast sector selection (FSS) with entire-bandwidth assignment in the forward link for orthogonal frequency and code division multiplexing (OFCDM) broadband packet access. We first elucidate that the additional improvement derived from FSS with independent frequency-block assignment by taking advantage of frequency-selective fading compared to FSS with entire-bandwidth assignment is small from the viewpoint of the received signal level when the number of frequency-block is not large. Then, we investigate the effect of FSS with entire-bandwidth assignment in laboratory and field experiments considering the application of key techniques for high-speed packet access such as hybrid ARQ with packet combining, soft-decision turbo decoding, and pilot channel-assisted channel estimation. Field experiments, which are conducted in an urban area near Tokyo, show that by applying FSS, the required signal power at the average residual packet error rate (PER) of 10/sup -3/ can be reduced by approximately 2.0 and 1.0 dB compared to the case without FSS when the maximum number of retransmissions in Incremental redundancy is 0 and 1, respectively.
OFCDM宽带分组无线接入前向链路全带宽分配快速扇区选择实验
本文介绍了用于正交频码分复用(OFCDM)宽带分组接入的前向链路全带宽分配的快速扇区选择(FSS)的实验结果。我们首先阐明了当频率块数量不大时,与全带宽分配的FSS相比,利用频率选择性衰落的独立频率块分配的FSS所获得的额外改进从接收信号电平的角度来看是很小的。然后,我们在实验室和现场实验中研究了全带宽分配FSS的效果,并考虑了高速分组接入的关键技术,如混合ARQ与分组合并、软判决turbo解码和导频信道辅助信道估计。在东京附近市区进行的现场实验表明,当最大重传次数为0和1时,采用FSS,在平均剩余包错误率(PER)为10/sup -3/时,所需的信号功率比不采用FSS的情况分别降低了约2.0和1.0 dB。
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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