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System-level approach to the design of collaborative distributed systems based on wireless sensor and actuator networks

机译:基于无线传感器和执行器网络的协作分布式系统设计的系统级方法

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Wireless sensor and actuator networks (WSAN) have become pervasive and are found in many embedded and intelligent systems. However, the complexity of applications based on WSANs is limited due to the lack of programming tools for this type of networks. In this paper, we show how a concurrent programming language, SystemJ, is used to develop a middleware-free distributed system that consists of a combination of stationary and mobile WSAN nodes. A distributed Ambient Intelligence (AmI) monitoring and control scenario that consists of collaborating stationary and mobile WSAN nodes with high degree of reactivity is presented. The system is designed and implemented using SystemJ to demonstrate the proposed system-level design approach. SystemJ is designed specifically to handle reactive and concurrent behaviors while providing modular and scalable methodology for distributed system composition. In addition, SystemJ removes the need for a middleware and allows system designers to focus on implementing system functionality rather than to deal with the low level programming details.
机译:无线传感器和执行器网络(WSAN)已经变得很普遍,并且在许多嵌入式和智能系统中都可以找到。但是,由于缺少用于此类网络的编程工具,因此基于WSAN的应用程序的复杂性受到限制。在本文中,我们展示了如何使用并发编程语言SystemJ来开发无中间件的分布式系统,该分布式系统由固定WSAN节点和移动WSAN节点组成。提出了一种分布式环境智能(AmI)监视和控制方案,该方案由具有较高反应性的固定WSAN节点与移动WSAN节点协作组成。该系统是使用SystemJ设计和实现的,以演示所建议的系统级设计方法。 SystemJ专为处理响应和并发行为而设计,同时为分布式系统组成提供模块化和可扩展的方法。另外,SystemJ消除了对中间件的需求,并使系统设计人员可以专注于实现系统功能,而不是处理底层编程细节。

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