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Understanding the Scheduling Performance in Wireless Networks with Successive Interference Cancellation

机译:了解具有连续干扰消除功能的无线网络中的调度性能

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摘要

Successive interference cancellation (SIC) is an effective way of multipacket reception to combat interference in wireless networks. We focus on link scheduling in wireless networks with SIC, and propose a layered protocol model and a layered physical model to characterize the impact of SIC. In both the interference models, we show that several existing scheduling schemes achieve the same order of approximation ratios, independent of whether or not SIC is available. Moreover, the capacity order in a network with SIC is the same as that without SIC. We then examine the impact of SIC from first principles. In both chain and cell topologies, SIC does improve the throughput with a gain between 20 and 100 percent. However, unless SIC is properly characterized, any scheduling scheme cannot effectively utilize the new transmission opportunities. The results indicate the challenge of designing an SIC-aware scheduling scheme, and suggest that the approximation ratio is insufficient to measure the scheduling performance when SIC is available.
机译:连续干扰消除(SIC)是接收多数据包以对抗无线网络中干扰的有效方法。我们将重点放在具有SIC的无线网络中的链路调度上,并提出一个分层的协议模型和一个分层的物理模型来描述SIC的影响。在这两种干扰模型中,我们表明,几种现有的调度方案都可以实现相同的逼近率阶数,而与SIC是否可用无关。此外,具有SIC的网络中的容量顺序与不具有SIC的网络中的容量顺序相同。然后,我们从第一条原则检验SIC的影响。在链和单元拓扑中,SIC的确提高了吞吐量,增幅为20%至100%。但是,除非适当地描述了SIC,否则任何调度方案都无法有效利用新的传输机会。结果表明设计可识别SIC的调度方案面临的挑战,并表明当SIC可用时,近似率不足以衡量调度性能。

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