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Admission Control Scheme for Service Dropping Performance Improvement in High-Speed Railway Communication Systems

机译:改善高速铁路通信系统服务下降性能的准入控制方案

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摘要

In high-speed railway communication (HSRC) systems, ensuring the continuity of on-going services is one of the toughest challenges for the existence of influential factors such as frequent handoff event, short time window for handoff, severe channel distortion, etc. In HSRC systems with limited resources, admission control (AC) is one of the most efficient methods to overcome this challenge and guarantee the requirement of service dropping probability (SDP). However, now, there is still a lack of a recognized AC scheme that can be used in HSRC systems. In this paper, a novel AC scheme is proposed to HSRC systems, where the resource reservation algorithm and resource preemption model are developed together to reduce the SDP. First, the main reasons for on-going service dropping related to the AC scheme are analyzed, which include frequent adjustment of services' modulation-and-coding scheme (MCS) and continual handoff events. Second, an adaptive resource reservation algorithm is proposed to optimize the amount of reserved bandwidth for on-going services, where the effect of MCS change at the physical layer, and the characteristics of HSRC are both taken into account. Third, considering the effect of resource preemption on on-going services, a resource preemption model is developed to further obtain the available bandwidth resources. Then, according to the above works, the AC scheme is proposed to optimize the SDP performance. Finally, simulation results are presented to demonstrate the effectiveness of the proposed AC scheme.
机译:在高速铁路通信(HSRC)系统中,确保持续的服务连续性是存在影响因素(如频繁的越区切换事件,越区切换的时间窗短,严重的信道失真等)的最严峻挑战之一。资源受限的HSRC系统中,准入控制(AC)是克服这一挑战并保证服务下降概率(SDP)的最有效方法之一。但是,现在仍然缺少可用于HSRC系统的公认的AC方案。本文针对HSRC系统提出了一种新的AC方案,该方案共同开发了资源预留算法和资源抢占模型以减少SDP。首先,分析了与AC方案相关的服务持续下降的主要原因,包括频繁调整服务的调制和编码方案(MCS)和连续切换事件。其次,提出了一种自适应资源预留算法,以优化正在进行的业务的预留带宽量,同时考虑了物理层MCS的影响以及HSRC的特性。第三,考虑资源抢占对持续业务的影响,建立了资源抢占模型,以进一步获得可用带宽资源。然后,根据上述工作,提出了一种交流方案来优化SDP性能。最后,仿真结果表明了所提出的交流方案的有效性。

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