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Coverage Aware Dynamic Scheduling Strategies for Wireless Video Sensor Nodes to Reduce Energy Consumption

机译:无线视频传感器节点的覆盖感知动态调度策略,可降低能耗

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In the disaster hit area random deployment of wireless video sensor nodes (VSNs) (having limited battery power) consumes a lot of energy for capturing visual data, local processing and transmission of data. Random deployment of those VSNs causes to overlap their sensing ranges which can be utilized to cover the sensing region of several VSNs and to shut them off. It helps increase their lifetime due to reduced energy consumption while maintaining almost the same area coverage for network connectivity. Loss of messages due to collision in duty cycling phase keeps more VSNs to remain awake than it is expected. Two advanced approaches APP_1 and APP_2 (using a combination of static all time active VSN (ATVSN) and static active/inactive VSN (AIVSN)) are proposed here to decrease number of active VSNs in the target area and to reduce energy consumption without losing much area coverage. These two approaches are compared with an existing approach, showing their superiority in terms of energy consumption. APP_1 performs much better than the existing approach in terms of energy consumption whereas APP_2 is more efficient than APP_1 and the existing approach in terms of energy consumption, run time complexity, storage overhead and communication overhead.
机译:在受灾地区,随机部署无线视频传感器节点(VSN)(电池电量有限)会消耗大量能量来捕获可视数据,本地处理和数据传输。这些VSN的随机部署导致它们的感测范围重叠,该感测范围可用于覆盖多个VSN的感测区域并关闭它们。由于减少了能耗,它有助于延长其使用寿命,同时保持几乎相同的网络连接区域覆盖范围。在占空比循环阶段由于冲突导致的消息丢失使更多的VSN保持清醒状态,这超出了预期。此处提出了两种先进的方法APP_1和APP_2(结合使用静态全时活动VSN(ATVSN)和静态活动/非活动VSN(AIVSN)),以减少目标区域中活动VSN的数量并减少能耗,而不会造成太多损失区域覆盖。将这两种方法与现有方法进行了比较,显示了它们在能耗方面的优势。就能耗而言,APP_1的性能要比现有方法好得多,而就能耗,运行时间复杂度,存储开销和通信开销而言,APP_2的效率要比APP_1和现有方法的效率更高。

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