Call dropping performance of the relay station (RS)-first channel access scheme in LTE-Advanced relay networks

Xian Wang, S. Horng, R. Cheng, P. Fan
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Abstract

Both the Third Generation Partnership Project (3GPP) Long Term Evolution (LTE-Advanced) and IEEE 802.16m rely on relay technique to ameliorate cell edge throughput. Despite the throughput benefit achieved by relay technique, LTE-Advanced relay network is vulnerable to frequent handoffs, which can degrade the dropping performance, an important quality-of-service metric concerning realtime communications. This paper proposes a mathematical model to analyze the call dropping performance of the relay station (RS)-first channel access scheme, which prefers a RS-channel over an eNode-B (eNB)-channel when determining an access channel for a new and a handoff call. Closed-form analytical result is derived for the dropping probability of the RS-first policy and based on the result a numerical study is conducted to evaluate the influences of diverse parameters on the dropping performance. The result obtained in this paper can be availed of to develop appropriate call admission strategies in LTE-Advanced relay networks.
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LTE-Advanced中继网络中继站(RS)优先信道接入方案的掉话性能
第三代合作伙伴计划(3GPP)长期演进(LTE-Advanced)和IEEE 802.16m都依赖中继技术来改善蜂窝边缘吞吐量。尽管中继技术带来了吞吐量优势,但LTE-Advanced中继网络容易受到频繁切换的影响,从而降低了实时通信中重要的服务质量指标——丢包性能。本文提出了一个数学模型来分析中继站(RS)优先信道接入方案的丢话性能,该方案在确定新呼叫和切换呼叫的接入信道时更倾向于RS信道而不是eNode-B信道。推导了rs优先策略的抛落概率的封闭解析结果,并在此基础上进行了数值研究,评价了不同参数对抛落性能的影响。本文的研究结果可用于在LTE-Advanced中继网络中制定适当的呼叫接纳策略。
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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