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Energy-efficient high-speed packet access in WCDMA systems with smart packet dispatching: performance with TCP/IP based applications

机译:具有智能数据包调度功能的WCDMA系统中的节能高速数据包访问:基于TCP / IP的应用程序的性能

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This paper presents a performance analysis of high-speed downlink packet access (HSDPA) for TCP/IP applications in WCDMA systems with smart packet dispatching (SPD). The focus is on energy efficiency over burst-error correlated fading channels. The fading-channel characterization thereof is due to low user mobility of the primarily targeted environments for HSDPA applications. Using theoretical analysis and simulation, we show that in burst-error correlated fading channels adapting the time instant of scheduling/dispatching retransmission to fading-channel conditions: (i) significantly reduces the number of retransmissions; and (ii) helps closing the gap of bad channel states allowing the system to operate with much lower fade margin or transmit-power. It thus improves the efficiency of resource utilization in HSDPA. This method is referred to as SPD. In our modeling, we study the impact of fading based on fade duration statistics. The effects of diversity, mobility, and QoS constraints (such as timer for discarding out-of-date packets) are taken into account. The results are used to develop simple and energy-efficient adaptive SPD mechanisms.
机译:本文介绍了具有智能数据包分派(SPD)的WCDMA系统中TCP / IP应用的高速下行链路数据包访问(HSDPA)的性能分析。重点是与突发错误相关的衰落信道的能效。其衰落信道特性归因于HSDPA应用程序的主要目标环境的低用户移动性。使用理论分析和仿真,我们表明,在与突发错误相关的衰落信道中,将调度/调度重传的时间瞬间调整为适应衰落信道的条件:(i)显着减少了重传次数; (ii)帮助弥合不良信道状态的间隙,使系统能够以低得多的衰落裕度或发射功率运行。因此,它提高了HSDPA中资源利用的效率。此方法称为SPD。在我们的建模中,我们基于衰落持续时间统计数据研究衰落的影响。考虑了分集,移动性和QoS约束(例如用于丢弃过期数据包的计时器)的影响。结果用于开发简单且节能的自适应SPD机制。

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