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Evaluation of wimax admission control algorithms in mobile voip scenarios with batch arrivals and nbldpc fec

机译:带有批量到达和nbldpc fec的移动voip方案中的wimax接纳控制算法评估

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This paper presents results of assessing quality of VoIP conversations in WiMAX networks using the nbLDPC (non-binary Low- Density Parity-Check) FEC in mobility scenarios that are based on the real world terrain charactristics around simulated BS. System under test (SUT) is instrumented with three Call Admission Control (CAC) mechanisms (namely EMAC, ARAC and nsc-ARAC). These algorithms are evaluated against controlling the VBR traffic that comes with burst arrivals. The first algorithm relies on calculating simple exponential weighted moving average (EWMA) of the overall resource consumption whereas the other two ARAC algorithms perform calculations discerning between the new, the ongoing and the finishing connections thus providing more accurate resource estimations (but the ARAC tracks the history of requests as well). In order to evaluate their performance authors rely on a cell-level based simulation environment that relies on the cooperative use of well known simulators - ns2 and Matlab. Previous work in the field is enhanced by improving the fidelity of proposed IEEE 802.16 simulator. Authors demonstrate the influence of increasing number of arrivals per one batch as well as testing the "zero hour" scenario (system saturation). In order to include nbLDPC codes in SUT’s mobile channels, a method called Link-To-System interface (L2S) has been implemented.
机译:本文提出了在移动场景中使用nbLDPC(非二进制低密度奇偶校验)FEC评估WiMAX网络中VoIP对话质量的结果,该场景基于模拟BS周围的真实地形特征。被测系统(SUT)具有三种呼叫准入控制(CAC)机制(即EMAC,ARAC和nsc-ARAC)。对这些算法进行了评估,以控制突发到达所带来的VBR流量。第一种算法依赖于计算总体资源消耗的简单指数加权移动平均值(EWMA),而其他两种ARAC算法执行可区分新连接,进行中连接和完成连接的计算,从而提供更准确的资源估算(但ARAC跟踪请求的历史记录)。为了评估其性能,作者依赖于基于单元级的仿真环境,该环境依赖于众所周知的ns2和Matlab模拟器的协同使用。通过提高建议的IEEE 802.16模拟器的保真度,可以增强该领域的先前工作。作者展示了每批进货数量增加以及测试“零小时”情况(系统饱和)的影响。为了在SUT的移动频道中包含nbLDPC码,已实施了一种称为“链接到系统的接口(L2S)”的方法。

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