MARINE: MiddlewAre for resource and mIssion-oriented sensor NEtworks

Flávia Coimbra Delicato, J. Portocarrero, José R. Silva, Paulo F. Pires, Rodrigo P. M. de Araújo, T. Batista
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引用次数: 5

Abstract

Wireless sensor networks (WSNs) operate in a highly heterogeneous and dynamic scenario. On one hand, there is a wide range of potential applications for WSNs, each one with different features and requirements and defining a different mission for the sensor nodes to accomplish. On the other hand, the execution context regarding the devices, networks and the physical environment around is subject to frequent changes. In order to achieve the best network performance while meeting requirements of different application missions and contexts, it is crucial to endow the WSN with customization and adaptation capabilities. Such capabilities should be preferably provided by a middleware layer that translates application missions to network configuration in a transparent way for the final users and client applications. This middleware should also provide facilities to program the WSN nodes, to access sensor generated data and to promote interoperability among different applications and networks. To tackle these challenges, we propose MARINE (MiddlewAre for Resource and mIssion-oriented sensor NEtworks), a WSN middleware built on REST and microkernel architectural patterns. MARINE tailors the WSN to requirements of each application mission while saving the overall resource consumption in sensor nodes.
海军:面向资源和任务的传感器网络中间件
无线传感器网络(wsn)在高度异构和动态的场景中运行。一方面,无线传感器网络有广泛的潜在应用,每个应用都有不同的特征和要求,并为传感器节点定义了不同的任务。另一方面,关于设备、网络和周围物理环境的执行上下文经常变化。为了在满足不同应用任务和环境需求的同时获得最佳的网络性能,赋予WSN自定义和自适应能力至关重要。这种功能最好由中间件层提供,中间件层以透明的方式将应用程序任务转换为网络配置,供最终用户和客户端应用程序使用。该中间件还应提供对WSN节点进行编程、访问传感器生成的数据以及促进不同应用程序和网络之间的互操作性的功能。为了应对这些挑战,我们提出了基于REST和微内核架构模式的WSN中间件MARINE(面向资源和任务的传感器网络中间件)。MARINE根据每个应用任务的要求定制WSN,同时节省传感器节点的整体资源消耗。
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