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On the feasibility of using servo-mechanisms in wireless multimedia sensor network deployments

机译:关于在无线多媒体传感器网络部署中使用伺服机制的可行性

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This paper considers the use of servo-mechanisms as part of a tightly integrated homogeneous Wireless Multimedia Sensor Network (WMSN). We describe the design of our second generation WMSN node platform, which has increased image resolution, in-built audio sensors, PIR sensors, and servomechanisms. These devices have a wide disparity in their energy consumption and in the information quality they return. As a result, we propose a framework that establishes a hierarchy of devices (sensors and actuators) within the node and uses frequent sampling of cheaper devices to trigger the activation of more energy-hungry devices. Within this framework, we consider the suitability of servos for WMSNs by examining the functional characteristics and by measuring the energy consumption of 2 analog and 2 digital servos, in order to determine their impact on overall node energy cost. We also implement a simple version of our hierarchical sampling framework to evaluate the energy consumption of servos relative to other node components. The evaluation results show that: (1) the energy consumption of servos is small relative to audio/image signal processing energy cost in WMSN nodes; (2) digital servos do not necessarily consume as much energy as is currently believed; and (3) the energy cost per degree panning is lower for larger panning angles.
机译:本文考虑将伺服机制用作紧密集成的同类无线多媒体传感器网络(WMSN)的一部分。我们将描述第二代WMSN节点平台的设计,该平台已提高了图像分辨率,内置音频传感器,PIR传感器和伺服机构。这些设备的能耗和返回的信息质量差异很大。因此,我们提出了一个框架,该框架可在节点内建立设备(传感器和执行器)的层次结构,并使用对便宜设备的频繁采样来触发更多耗能设备的激活。在此框架内,我们将通过检查功能特性并通过测量2个模拟和2个数字伺服器的能耗来考虑WMSN伺服器的适用性,以确定它们对整体节点能源成本的影响。我们还实现了分层采样框架的简单版本,以评估伺服器相对于其他节点组件的能耗。评估结果表明:(1)WMSN节点中,伺服器的能耗相对于音频/图像信号处理能耗而言较小; (2)数字伺服器不一定消耗目前认为的能量; (3)对于较大的摇摄角度,每度摇摄的能量成本较低。

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