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Scheduling for time-division based shared channel allocation for UMTS

机译:调度基于时分的UMTS共享信道分配

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The Universal Mobile Telecommunications System (UMTS) adopts the WCDMA technology as the radio access interface to provide variable transmission rate services. There are four classes of connections identified in UMTS, which are the conversational, streaming, interactive, and background connections. To efficiently utilize radio bandwidth, the shared channel approach is proposed to deliver the packets for the interactive and background connections. This naner nronoses a "Shared-Channel As- signment and Scheduling" (SCAS) algorithm to periodically allocate shared channels to serve interactive and background connections. We conduct formal mathematical proofs and simulation experiments to investigate the performance of the SCAS algorithm. We formally prove that with SCAS, a shared channel can be fully utilized (i.e., the utilization of a shared channel can be up to 100%) to serve the interactive connections. Our analysis indicates that compared with the previously proposed shared channel allocation and scheduling algorithms, there are less computation and communication overheads introduced in the SCAS algorithm. The results of the simulation experiments indicate that it is preferred to set up the Transmission Time Interval (TTI; that is, the unit of time interval for shared channel allocation) smaller to optimize the performance of the SCAS algorithm, including the shared channel utilization and the average waiting time of a connection before getting transmission service.
机译:通用移动电信系统(UMTS)采用WCDMA技术作为无线电接入接口,以提供可变的传输速率服务。 UMTS中确定了四类连接,分别是会话连接,流连接,交互式连接和后台连接。为了有效地利用无线电带宽,提出了共享信道方法来传递用于交互式和后台连接的分组。该术语记述了“共享频道分配和调度”(SCAS)算法,以定期分配共享频道以服务于交互和后台连接。我们进行正式的数学证明和仿真实验,以研究SCAS算法的性能。我们正式证明,使用SCAS,可以充分利用共享信道(即,共享信道的利用率最高可以达到100%)来为交互式连接提供服务。我们的分析表明,与先前提出的共享信道分配和调度算法相比,SCAS算法引入的计算和通信开销更少。仿真实验结果表明,最好将传输时间间隔(TTI;即共享信道分配的时间间隔单位)设置得较小,以优化SCAS算法的性能,包括共享信道利用率和连接获得传输服务之前的平均等待时间。

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