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System design issues in time-driven sensor networks based on stochastic sampling

机译:基于随机采样的时间驱动传感器网络中的系统设计问题

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摘要

This paper considers the type of sensor networks devoted to continuous monitoring. Typically, these networks constitute the hardware support for many environmental applications, where some physical phenomenon must be regularly monitored over a certain region. In line with the usual random deployment of sensor networks, the distributed sense-and-transmit process can be viewed as an extension of a technique from computer graphics called stochastic sampling, which provides an alternative to the uniform deployment imposed by multidimensional sampling theory. In addition, this paper proposes extending the randomness of the sampling process to the time domain, in order to avoid the strong synchronization requirements that sensor nodes should satisfy if they had to generate and transmit their readings periodically. The focus of the paper is system-oriented. Thus, it is assumed that packet transmissions are governed by a previously proposed MAC protocol, which can efficiently support the random nature of data with hardly detriment to the quality of the reconstructed signal. In particular, the paper focuses on the case of exponential randomization, since it allows for analytical treatment. Then, under these assumptions, closed-form expressions that relate the most relevant system-design parameters (application requirements, deployment and network configuration parameters and system behavior) are derived, and the main design tradeoffs are highlighted.
机译:本文考虑了用于连续监控的传感器网络的类型。通常,这些网络构成了对许多环境应用程序的硬件支持,在这些环境中,必须定期监视某些区域的某些物理现象。与常规的传感器网络随机部署相一致,分布式感知和传输过程可以看作是计算机图形技术的一种扩展,称为随机抽样,它为多维抽样理论施加的统一部署提供了一种替代方法。另外,本文提出将采样过程的随机性扩展到时域,以避免传感器节点必须定期生成和传输其读数时必须满足的强烈同步要求。本文的重点是面向系统的。因此,假设分组传输由先前提出的MAC协议控制,该MAC协议可以有效地支持数据的随机性而几乎不损害重构信号的质量。特别是,本文着重于指数随机化的情况,因为它允许进行分析处理。然后,在这些假设下,得出与最相关的系统设计参数(应用程序需求,部署和网络配置参数以及系统行为)相关的闭式表达式,并突出显示主要的设计折衷。

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