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Power-Line Impedance Estimation at FCC Band Based on Intelligent Home Appliances Status Detection Algorithm Through Their Individual Energy and Impedance Signatures

机译:基于智能家电状态检测算法的FCC频段电力线阻抗估计(基于能量和阻抗特征)

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摘要

Power-line communication (PLC) systems use the existing power line as a communication channel between the nodes. Understanding the high-frequency behavior of the power line and loads at the PLC frequency band is essential for designing the PLC system to achieve the desired performance. Based on the impedance behavior of the channel, PLC transceivers can adaptively adjust their operating behaviors to operate more effectively and efficiently. Tracking the impedance variation would also enable smart-grid systems to implement channel health monitoring. In this research, an s-domain home power-line impedance model estimation method at the Federal Communications Commission band based on impedance signatures of the loads and cables as well as the load schedules is developed. The model contains the amplitude and phase characteristics of the impedance at the FCC band. The presented home appliance signature contains an s-domain impedance model and complex power consumption at the power-line frequency. Measurements have been made for nine different appliances and a standard cable with proper lengths is typically used in US homes in order to define their high-frequency impedance signatures. The performance of the status detection algorithm is tested for five different scenarios. Based on the experimental tests, we found that the method we proposed for detecting the working status of the appliances and the method for estimating PLC channel impedance works very accurately.
机译:电力线通信(PLC)系统使用现有的电力线作为节点之间的通信通道。了解电力线和负载在PLC频带上的高频行为对于设计PLC系统以实现所需性能至关重要。根据通道的阻抗行为,PLC收发器可以自适应地调整其操作行为,以更有效地进行操作。跟踪阻抗变化还将使智能电网系统能够实施信道健康状况监控。在这项研究中,开发了一种基于负载和电缆的阻抗特征以及负载计划的联邦通信委员会频段内的s域家庭电力线阻抗模型估计方法。该模型包含FCC频段阻抗的幅度和相位特性。呈现的家用电器签名包含一个S域阻抗模型和电力线频率下的复杂功耗。已经对九种不同的设备进行了测量,在美国家庭中通常使用具有适当长度的标准电缆来定义其高频阻抗签名。状态检测算法的性能针对五个不同的场景进行了测试。在实验测试的基础上,我们发现提出的检测设备工作状态的方法和估计PLC通道阻抗的方法非常准确。

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