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Request–Response and Censoring-Based Energy-Efficient Decentralized Change-Point Detection With IoT Applications

机译:使用物联网应用程序的要求 - 响应和基于审查的节能分散转换点检测

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摘要

Change-point detection (CPD) from streaming data is a fundamental problem in statistical signal processing and has wide applications in wireless sensor networks and the Internet of Things (IoT), such as environmental monitoring and physical activity detection. In various detection schemes, decentralized detection without fusion center is becoming increasingly popular for IoT applications since it enjoys the benefit of strong robustness and security. However, it faces the big challenge of high energy consumption. In this work, we propose an energy-efficient decentralized CPD algorithm called request-response and censoring-based cumulative sum. Specifically, we design a novel communication strategy based on request-response and censoring scheme, which could help the sensors extract useful information from the neighbor sets with a low amount of communication. Furthermore, to provide a guideline on selecting the parameters involved in our algorithm, we theoretically analyze the performance of the proposed algorithm under a simplification for the most interesting cases, in terms of two standard criteria average running length (ARL) and expected detection delay (EDD). Numerical simulations are conducted to verify the effectiveness of the proposed algorithm. Moreover, we test the feasibility of the proposed algorithm in the physical activity CPD task. The experimental results on the real-world data set demonstrate its high energy efficiency and small detection delay.
机译:媒体数据的变化点检测(CPD)是统计信号处理中的基本问题,并且在无线传感器网络和物联网(物联网)中具有广泛的应用,例如环境监测和物理活动检测。在各种检测方案中,没有融合中心的分散检测对于物联网应用越来越受欢迎,因为它享有强大的鲁棒性和安全性的好处。然而,它面临着高能耗的大挑战。在这项工作中,我们提出了一种称为请求响应和基于审查的累积总和的节能分散的CPD算法。具体地,我们设计基于请求 - 响应和审查方案的新型通信策略,该思索方案可以帮助传感器从邻居集中提取具有较低通信量的邻居集的有用信息。此外,为了提供关于选择算法中涉及的参数的指导,我们理论上根据两个标准标准平均运行长度(ARL)和预期检测延迟()在最有趣的情况下为最有趣的情况的简化分析所提出的算法的性能。 EDD)。进行数值模拟以验证所提出的算法的有效性。此外,我们在物理活动CPD任务中测试所提出的算法的可行性。实验结果对现实数据集的实验结果表明了其高能量效率和小的检测延迟。

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