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Dynamic scheduling framework on an RLC/MAC layer for general packet radio service

机译:通用分组无线业务在RLC / MAC层上的动态调度框架

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We present a traffic-scheduling framework that can dynamically allocate radio resources to a general packet radio service (GPRS) mobile station (MS) based on the interference levels of the radio links and the quality of service (QoS) specification of the MS. The underlying idea of this scheduling scheme is to preserve more bandwidth for use by those MSs that are within a low interference region so that the limited radio resources can be used more effectively. In this scheme, an MS uses a low transmission rate for data transfer when the MS is within a high interference region to avoid wasting bandwidth by transmitting data in a condition with high interference. In order to compensate for the service loss of the MS, we allocate more bandwidth to the MS when it is within a low interference region. In addition, we also propose an analytical model that can be used to derive the transmission rate for an MS in a low interference region based on the delay-bound requirement of the MS. The performance results show that our dynamic scheme can utilize the bandwidth more effectively to satisfy various QoS requirements of the MSs in the GPRS system without changing the convolution-coding rate.
机译:我们提出了一种流量调度框架,可以基于无线电链路的干扰级别和MS的服务质量(QoS)规范,将无线电资源动态分配给通用分组无线电服务(GPRS)移动台(MS)。该调度方案的基本思想是保留更多带宽供低干扰区域内的那些MS使用,以便可以更有效地使用有限的无线电资源。在该方案中,当MS处于高干扰区域内时,MS使用低传输速率进行数据传输,以避免在高干扰条件下通过传输数据来浪费带宽。为了补偿MS的服务损失,当MS在低干扰区域内时,我们会为其分配更多的带宽。此外,我们还提出了一种分析模型,该模型可用于基于MS的延迟限制要求来得出低干扰区域中MS的传输速率。性能结果表明,我们的动态方案可以在不改变卷积编码率的情况下,更有效地利用带宽来满足GPRS系统中MS的各种QoS要求。

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