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Impulsive noise survey on Power Line Communication networks up to 125 kHz for smart metering infrastructure in systems with solar inverters in Turkey

机译:在土耳其使用太阳能逆变器的系统中,用于智能计量基础设施的高达125 kHz的电力线通信网络上的脉冲噪声测量

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The effort to find new sources of energy became a challenge for all scientific and technological areas in the world. Use of renewable resources in distributed generation is one of the considerable options for the increasing energy demand. Conventional energy systems transform into Smart Grid concept by the integration of innovative smart energy devices with the conventional electricity grid infrastructure. Smart meters, as being one of the upcoming technologies of Smart Grid, have become popular since Distribution Network Operators prefer to apply Time-of-Use rates. These devices need economical and reliable communication system. Power Line Communication (PLC) has several advantages for achieving it. In this study it is aimed to improve narrowband Power Line Communication system performance by noise measurement and analysis, while at the same time contributing to the planning process of Frequency Shift Keying applications in Turkey. Different types of impulsive noise sources were selected. Between these selected impulsive noise sources, a solar grid tie micro inverter is particularly focused on. Because there is limited noise measurement campaigns exist related to it. Measurements were carried out using Data Acquisition card. Data recorded and analyzed using a digital signal processing program. Each of these loads' probability density function and cumulative distribution function expressions were given. Results were discussed according to allowed maximum disturbance levels. Between these noise sources solar power inverter produced higher noise amplitude in the whole frequency range. Except solar inverter, Frequency Shift Keying appeared applicable some carrier frequencies.
机译:寻找新能源的努力已成为世界上所有科学和技术领域的挑战。在分布式发电中使用可再生资源是不断增长的能源需求的重要选择之一。通过将创新的智能能源设备与常规电网基础设施相集成,常规能源系统转变为智能电网概念。智能电表作为智能电网中即将出现的技术之一,已变得很流行,因为配电网络运营商更喜欢采用使用时间费率。这些设备需要经济可靠的通信系统。电力线通信(PLC)具有实现它的几个优点。本研究旨在通过噪声测量和分析来改善窄带电力线通信系统的性能,同时为土耳其的频移键控应用的规划过程做出贡献。选择了不同类型的脉冲噪声源。在这些选定的脉冲噪声源之间,特别关注的是太阳能并网微型逆变器。由于噪声测量有限,因此存在与之相关的运动。使用数据采集卡进行测量。使用数字信号处理程序记录和分析数据。分别给出了这些载荷的概率密度函数和累积分布函数表达式。根据允许的最大干扰水平讨论了结果。在这些噪声源之间,太阳能逆变器在整个频率范围内产生了更高的噪声幅度。除太阳能逆变器外,频移键控似乎适用于某些载波频率。

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