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Bridging the Gap between Protocol and Physical Models for Wireless Networks

机译:弥合无线网络协议和物理模型之间的差距

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摘要

This paper tries to reconcile the tension between the physical model and the protocol model that have been used to characterize interference relationship in a multihop wireless network. The physical model (a.k.a. signal-to-interference-and-noise ratio model) is widely considered as a reference model for physical layer behavior but its application in multihop wireless networks is limited by its complexity. On the other hand, the protocol model (a.k.a. disk graph model) is simple but there have been doubts on its validity. This paper explores the following fundamental question: How to correctly use the protocol interference model? We show that, in general, solutions obtained under the protocol model may be infeasible and, thus, results based on blind use of protocol model can be misleading. We propose a new concept called "reality check” and present a method of using a protocol model with reality check for wireless networks. Subsequently, we show that by appropriate setting of the interference range in the protocol model, it is possible to narrow the solution gap between the two models. Our simulation results confirm that this gap is indeed small (or even negligible). Thus, our methodology of joint reality check and interference range setting retains the protocol model as a viable approach to analyze multihop wireless networks.
机译:本文试图调和物理模型和协议模型之间的张力,该模型已用于表征多跳无线网络中的干扰关系。物理模型(又称信号干扰噪声比模型)被广泛认为是物理层行为的参考模型,但其在多跳无线网络中的应用受到其复杂性的限制。另一方面,协议模型(又称磁盘图模型)很简单,但是对其有效性存有疑问。本文探讨了以下基本问题:如何正确使用协议干扰模型?我们表明,一般而言,在协议模型下获得的解决方案可能不可行,因此,基于盲目使用协议模型的结果可能会产生误导。我们提出了一种称为“真实性检查”的新概念,并提出了一种将协议模型与现实性检查一起用于无线网络的方法,随后我们证明,通过在协议模型中适当设置干扰范围,可以缩小解决方案的范围。这两个模型之间存在差距,我们的仿真结果证实了这个差距确实很小(甚至可以忽略不计),因此,我们的联合现实检查和干扰范围设置方法保留了协议模型作为分析多跳无线网络的可行方法。

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