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Power line communication design and implementation over distribution transformers

机译:配电变压器的电力线通信设计与实现

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摘要

Recently, communication requirements assumed a greater importance following interest in smart grid and cities. This type of communication is simply aimed to facilitate a wide range of applications, i.e. from metering to protection purposes. The traditional power line communication (PLC) has been used for many years over high voltage power lines but there is a need for expanding PLC applications for a more reliable operation of smart grids. For this purpose, this paper seeks to examine PLC application at the medium and low voltage sides over distribution transformers and proposes the transmission line model (TLM) technique to develop high frequency models of power apparatus (line and distribution transformer). The models are then verified by real time experiments on a distribution transformer (50kVA, 34.5/0.4 kV, 50Hz, oil insulated, delta/star connected). Laboratory experiments show that the proposed TLM model is suitable for high frequency modeling of a distribution transformer. Furthermore, the suggested technique is also compared to Matlab simulations.
机译:最近,随着对智能电网和城市的关注,通信要求变得越来越重要。这种类型的通信仅旨在促进广泛的应用,即从计量到保护目的。传统的电力线通信(PLC)在高压电力线上已经使用了很多年,但是为了智能电网的更可靠运行,需要扩展PLC应用程序。为此,本文试图研究PLC在配电变压器中,低压侧的应用,并提出了传输线模型(TLM)技术来开发电力设备(线路和配电变压器)的高频模型。然后通过配电变压器(50kVA,34.5 / 0.4 kV,50Hz,油绝缘,三角形/星形连接)上的实时实验验证模型。实验室实验表明,所提出的TLM模型适用于配电变压器的高频建模。此外,还将建议的技术与Matlab仿真进行了比较。

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