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A signal modeling framework for integrated design of sensor networks

机译:用于传感器网络集成设计的信号建模框架

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Summary form only given. Information processing, communication and routing are intimately coupled in sensor networks and the sensor signal characteristics in space and time directly impact these vital network functions. In this paper, we propose a signal modeling framework for sensor measurements that exposes the interaction between space-time signal sampling, distributed signal processing, and communication and routing of information through the network. We assume that the signal in a region of interest is a bandlimited stationary Gaussian field in spatial and temporal dimensions. The proposed model is based on the notion of spatial coherence regions that are dictated by Nyquist sampling in the spatial dimensions: the signals remain strongly correlated within each coherence region and vary approximately independently between different coherence regions. This simple approximate model has several implications for the design of sensor networks. First, it imposes a structure on distributed signal processing algorithms that is naturally suited to the communication constraints: high-bandwidth (feature-level) information exchange is limited to spatially local nodes within each coherence region, whereas low-bandwidth (decision-level) information exchange is sufficient between farther nodes in different coherence regions. Second, it enables simple bounds on the rate at which information is generated by any sub-region in the network. Third, it suggests natural communication strategies for transporting information from the coherence regions to a destination node or region and enables estimates of the corresponding link capacities.
机译:仅提供摘要表格。信息处理,通信和路由在传感器网络中紧密耦合,并且空间和时间上的传感器信号特征直接影响这些重要的网络功能。在本文中,我们提出了一种用于传感器测量的信号建模框架,该框架揭示了时空信号采样,分布式信号处理以及通过网络进行的通信和信息路由之间的相互作用。我们假设感兴趣区域中的信号是在空间和时间维度上的带限平稳高斯场。所提出的模型基于空间相干区域的概念,该概念由空间维度上的奈奎斯特采样决定:信号在每个相干区域内保持强烈相关,并且在不同相干区域之间近似独立地变化。这个简单的近似模型对传感器网络的设计有一些影响。首先,它在分布式信号处理算法上强加了一种自然适合通信限制的结构:高带宽(功能级)信息交换仅限于每个相干区域内的空间局部节点,而低带宽(决策级)不同相干区域中其他节点之间的信息交换就足够了。其次,它可以对网络中任何子区域生成信息的速率进行简单的限制。第三,它提出了用于将信息从相干区域传输到目标节点或目标区域的自然通信策略,并能够估计相应的链路容量。

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