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BiSNET: A biologically-inspired middleware architecture for self-managing wireless sensor networks

机译:BiSNET:用于自我管理无线传感器网络的具有生物学灵感的中间件架构

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摘要

This paper describes BiSNET (Biologically-inspired architecture for Sensor NET works), a middleware architecture that addresses several key issues in multi-modal wireless sensor networks (MWSNs) such as autonomy, scalability, adaptability, self-healing and simplicity. Based on the observation that various biological systems have developed mechanisms to overcome these issues, BiSNET follows certain biological principles such as decentralization, food gathering/storage and natural selection to design MWSN applications. In BiSNET, each application consists of multiple software agents, which operate on the BiSNET middleware platform in individual sensor nodes, and each agent exploits certain biologically-inspired mechanisms such as energy exchange, pheromone emission, replication, migration and death. This is analogous to a bee colony (application) consisting of multiple bees (agents). This paper describes the biologically-inspired mechanisms in BiSNET, and evaluates their impacts on the autonomy, scalability, adaptability, self-healing and simplicity of MWSNs. Simulation results show that BiSNET allows sensor nodes (agents and platforms) to be scalable with respect to network size, autonomously adapt their sleep periods for power efficiency and responsiveness of data collection, adap-tively aggregate data from different types of sensor nodes, and collectively self-heal (i.e., detect and eliminate) false positive sensor data. The BiSNET platform is implemented simple in its design and lightweight in its memory footprint.
机译:本文介绍BiSNET(Sensor NET的生物学启发体系结构),一种中间件体系结构,解决了多模式无线传感器网络(MWSN)中的几个关键问题,例如自治性,可伸缩性,适应性,自我修复和简单性。基于观察到各种生物系统已经开发出克服这些问题的机制,BiSNET遵循某些生物原理,例如去中心化,食物收集/存储和自然选择来设计MWSN应用程序。在BiSNET中,每个应用程序由多个软件代理组成,这些软件代理在各个传感器节点中的BiSNET中间件平台上运行,并且每个代理都利用某些生物启发的机制,例如能量交换,信息素释放,复制,迁移和死亡。这类似于由多个蜜蜂(代理)组成的蜂群(应用程序)。本文介绍了BiSNET中受生物学启发的机制,并评估了它们对MWSN的自治性,可伸缩性,适应性,自我修复和简单性的影响。仿真结果表明,BiSNET允许传感器节点(代理和平台)相对于网络规模进行扩展,自动调整其睡眠时间以提高功率效率和数据收集的响应速度,自适应地汇总来自不同类型传感器节点的数据,并共同进行汇总自愈(即检测并消除)假阳性传感器数据。 BiSNET平台的设计简单,内存占用量轻。

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