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State-centric programming for sensor-actuator network systems

机译:以状态为中心的传感器-执行器网络系统编程

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Distributed embedded systems such as wireless sensor and actuator networks require new programming models and software tools to support the rapid design and prototyping of sensing and control applications. Unlike centralized platforms and Web-based distributed systems, these distributed sensor-actuator network (DSAN) systems are characterized by a massive number of potentially failing nodes, limited energy and bandwidth resources, and the need to rapidly respond to sensor input. We describe a state-centric, agent-based design methodology to mediate between a system developer's mental model of physical phenomena and the distributed execution of DSAN applications. Building on the ideas of data-centric networking, sensor databases, and proximity-based group formation, we introduce the notion of collaboration groups, which abstracts common patterns in application-specific communication and resource allocation. Using a distributed tracking application with sensor networks, we'll demonstrate how state-centric programming can raise the abstraction level for application developers.
机译:诸如无线传感器和执行器网络之类的分布式嵌入式系统需要新的编程模型和软件工具,以支持传感和控制应用程序的快速设计和原型设计。与集中式平台和基于Web的分布式系统不同,这些分布式传感器-执行器网络(DSAN)系统的特点是大量潜在的故障节点,有限的能源和带宽资源以及对传感器输入快速响应的需求。我们描述了一种以状态为中心,基于代理的设计方法,以在系统开发人员的物理现象心理模型与DSAN应用程序的分布式执行之间进行中介。在以数据为中心的网络,传感器数据库和基于邻近性的组形成的思想的基础上,我们介绍了协作组的概念,该组抽象了特定于应用程序的通信和资源分配中的常见模式。将分布式跟踪应用程序与传感器网络一起使用,我们将演示以状态为中心的编程如何提高应用程序开发人员的抽象水平。

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