一种估算自组织无线传感器网络能量消耗的过程代数框架

L. Gallina, A. Marin, S. Rossi, Tingting Han, M. Kwiatkowska
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引用次数: 5

摘要

我们提出了一个框架来建模自组网无线传感器网络(WSNs),并研究了它们的连接特性以及它们在能耗、吞吐量和其他相关指标方面的性能。我们的框架基于概率过程演算,其中系统执行由马尔可夫概率调度器驱动,允许我们将过程项转换为离散时间马尔可夫链(dtmc),并使用概率模型检查器PRISM自动评估/估计网络的连通性属性和能源成本。据我们所知,这是第一次提出一个独特的框架来研究WSNs的定性(例如,通过证明组件的等效性或行为的正确性)和定量方面,使用允许精确和近似(通过蒙特卡罗模拟)分析的工具。我们通过考虑基于八卦路由协议的不同通信策略,为典型拓扑和移动性场景演示了我们的框架的工作原理。
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A process algebraic framework for estimating the energy consumption in ad-hoc wireless sensor networks
We present a framework for modelling ad-hoc Wireless Sensor Networks (WSNs) and studying both their connectivity properties and their performances in terms of energy consumption, throughput and other relevant indices. Our framework is based on a probabilistic process calculus where system executions are driven by Markovian probabilistic schedulers, allowing us to translate process terms into discrete time Markov chains (DTMCs) and use the probabilistic model checker PRISM to automatically evaluate/estimate the connectivity properties and the energy costs of the networks. To the best of our knowledge, this is the first work that proposes a unique framework for studying qualitative (e.g., by proving the equivalence of components or the correctness of a behaviour) and quantitative aspects of WSNs using a tool that allows both exact and approximate (via Monte Carlo simulation) analyses. We demonstrate our framework at work by considering different communication strategies based on gossip routing protocols, for a typical topology and a mobility scenario.
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