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Adaptive Methodologies for Energy-Efficient Object Detection and Tracking With Battery-Powered Embedded Smart Cameras

机译:电池供电的嵌入式智能相机进行节能目标检测和跟踪的自适应方法

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Battery-powered wireless embedded smart cameras have limited processing power, memory and energy. Since video processing tasks consume considerable amount of energy, it is essential to have lightweight algorithms to increase the energy efficiency of camera nodes. Moreover, just grabbing and buffering a frame require significant amount of energy. Thus, it is not sufficient to only focus on the vision algorithms. Methodologies are needed to determine when and how long a camera can be idle. In this paper, we first present a feedback method for detection and tracking, which provides significant savings in processing time. We take advantage of these savings by sending the microprocessor to idle state at the end of processing a frame. Then, we present an adaptive methodology that can send the camera to idle state not only when the scene is empty but also when there are target objects. Idle state duration is adaptively changed based on the speeds of tracked objects. We then introduce a combined method that employs the feedback method and the adaptive methodology together, and provides further savings in energy consumption. We provide a detailed comparison of these methods, and present experimental results showing the gains in processing time as well as the significant savings in energy consumption and increase in battery life.
机译:电池供电的无线嵌入式智能相机的处理能力,内存和能量有限。由于视频处理任务会消耗大量能量,因此必须使用轻量级算法来提高摄像机节点的能效。此外,仅抓取和缓冲框架就需要大量能量。因此,仅关注视觉算法是不够的。需要一些方法来确定相机何时闲置以及闲置多长时间。在本文中,我们首先提出一种用于检测和跟踪的反馈方法,该方法可显着节省处理时间。我们通过在处理帧结束时将微处理器发送到空闲状态来利用这些节省的资源。然后,我们提出一种自适应方法,该方法不仅可以在场景为空时而且在有目标对象时使相机进入空闲状态。空闲状态持续时间会根据被跟踪对象的速度进行自适应更改。然后,我们介绍一种结合使用反馈方法和自适应方法的组合方法,并进一步节省了能耗。我们对这些方法进行了详细的比较,并给出了实验结果,这些结果显示了处理时间的增加以及能源消耗的显着节省和电池寿命的增加。

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