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Adaptation techniques in wireless packet data services

机译:无线分组数据服务中的适配技术

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摘要

Today's cellular systems are designed to achieve 90-95 percent coverage for voice users (i.e., the ratio of signal to interference plus noise must be above a design target over 90 to 95 percent of the cell area). This ensures that the desired data rate which achieves good voice quality can be provided "everywhere". As a result, SINRs that are much larger than the target are achieved over a large portion of the cellular coverage area. For a packet data service, the larger SINR can be used to provide higher data rates by reducing coding or spreading and/or increasing the constellation density. It is straight-forward to see that cellular spectral efficiency (in terms of b/s/Hz/sector) can be increased by a factor of two or more if users with better links are served at higher data rates. Procedures that exploit this are already in place for all the major cellular standards in the world. In this article, we describe data rate adaptation procedures for CDMA (IS-95), wideband CDMA (cdma2000 and UMTS WCDMA), TDMA (IS-136), and GSM (GPRS and EDGE).
机译:如今的蜂窝系统旨在为语音用户实现90-95%的覆盖率(即,信号与干扰加噪声之比必须超过90%至95%的蜂窝区域的设计目标)。这确保了可以在任何地方提供实现良好语音质量的所需数据速率。结果,在蜂窝覆盖区域的很大一部分上实现了比目标大得多的SINR。对于分组数据服务,可以通过减少编码或扩展和/或增加星座密度来使用较大的SINR提供更高的数据速率。显而易见,如果以更高的数据速率为链接质量更好的用户提供服务,蜂窝频谱效率(以b / s / Hz /扇区为单位)可以提高两倍或更多。对于世界上所有主要的蜂窝标准,已经采用了利用这一点的程序。在本文中,我们描述了CDMA(IS-95),宽带CDMA(cdma2000和UMTS WCDMA),TDMA(IS-136)和GSM(GPRS和EDGE)的数据速率适配过程。

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