An efficient packet scheduling algorithm for downlink queue to provide lossless handoff and QoS in 4G mobile networks

Pankaj Gupta, H. Mohammed, M. Hashem
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Abstract

Next generation mobile networks are expected to provide seamless personal mobile communication and quality of service (QoS). Lossless handoff is a key issue for providing the QoS. This paper presents a two-layer downlink queuing model and proposes a scheduling mechanism for providing lossless handoff and QoS in mobile networks, which exploit IP as a transport technology for transferring datagram between base stations and the high-speed downlink packet access (HSDPA) at the radio layer. In order to reduce handoff packet dropping rate at the radio layer and packet forwarding rate at the IP layer and to provide high system performance, new scheduling algorithms are performed at both IP and radio layer, which exploit handoff priority scheduling principles and take into account buffer occupancy and channel conditions. Performance results obtained by computer simulation show that, by exploiting the downlink queuing model and scheduling algorithms, the system is able to provide low handoff packet dropping rate, low packet forwarding rate, and high downlink throughput.
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一种有效的4G移动网络下行队列分组调度算法,提供无损切换和QoS
下一代移动网络有望提供无缝的个人移动通信和服务质量(QoS)。无损切换是提供QoS的关键问题。本文提出了一种两层下行链路排队模型,并提出了一种在移动网络中提供无损切换和QoS的调度机制,该模型利用IP作为传输技术在基站和无线层的高速下行分组接入(HSDPA)之间传输数据报。为了降低无线层的切换丢包率和IP层的分组转发率,提高系统的性能,在IP层和无线层都采用了新的调度算法,该算法利用切换优先级调度原理,并考虑了缓冲区占用和信道条件。通过计算机仿真得到的性能结果表明,通过利用下行排队模型和调度算法,系统能够提供低切换丢包率、低分组转发率和高下行吞吐量。
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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