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Design and Characterization of a New MV PLC Coupler for Smart Electric Energy Systems

机译:智能电能系统新型MV PLC耦合器的设计与鉴定

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This paper deals with the design, modeling and characterization of a new coupling system for medium voltage (MV) narrow band power line communications (NB-PLC). It exploits the capacitive divider of voltage detecting systems (VDSs) normally used to reveal the mains voltage presence, thus avoiding the use of dedicated MV couplers. The proposed coupling system was patented by the authors. In this paper, the modeling of the VDS capacitive divider is presented, using a proper characterization method. Moreover, the interface card design is described, based on simulation of the whole PLC transmission channel. Laboratory tests are also presented and discussed. More in detail, a frequency response analysis is performed to validate the developed model and the related simulations. Moreover, transmission tests with nPSK modems demonstrate that the proposed coupling system can be effective for narrowband modulated signal transmission. With respect to other tests presented in previous papers, in this paper the experimental characterization and validation was performed in an extended frequency range up to 200 kHz.
机译:本文涉及用于中电压(MV)窄带电力线通信(NB-PLC)的新耦合系统的设计,建模和表征。它利用通常用于揭示电源电压存在的电压检测系统(VDS)的电容分压器,从而避免使用专用MV耦合器。所提出的耦合系统由作者获得专利。在本文中,使用适当的表征方法给出了VDS电容分频器的建模。此外,基于整个PLC传输信道的仿真描述了接口卡设计。还提出和讨论了实验室测试。更详细地,执行频率响应分析以验证开发的模型和相关模拟。此外,使用NPSK调制解调器的传输测试证明所提出的耦合系统可以对窄带调制信号传输有效。关于先前论文中呈现的其他测试,本文在高达200kHz的延长频率范围内进行实验表征和验证。

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