IoT-based Communication Techniques of PVs Random Settlement in Residential Feeder

R. Rachmawati
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Abstract

Whenever the additional random 1-5 kW rating and location photovoltaics (PVs) are connected into the residential feeder, the voltage profiles of the feeder become unbalanced. Besides the various load at the customer side has already imbalanced the feeder, the installed single-phase rooftop PVs do the same thing. They caused the power quality issues, namely voltage magnitude and angle, frequency, active and reactive powers become expressively recognized. Since the ancient electric utility infrastructure from power plants to customer side is now disrupting by the added settlement of several utility devices, the power quality issues have raisin significantly. This paper aims to implement the concept of several internets of things (IoT) technologies into the electric and communication infrastructures as they are able to virtuously cycle, enable, amplify and reinforce the utility development. To improve the imbalanced voltage and other power quality issues, this concept applied to the existed voltage regulation technique (VRT). The results show that the concept of IoT-based communication is successfully implemented if both the devices and technologies properly selected and designed. Additionally, the classification of communication layers, then the coordination of sensors, actuators, and meters along the residential feeder need to be considered as well.
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基于物联网的住宅馈线pv随机沉降通信技术
当额外的随机1-5千瓦额定值和位置光伏(pv)连接到住宅馈线时,馈线的电压分布就会变得不平衡。除了客户端的各种负载已经使馈线不平衡之外,安装的单相屋顶光伏也在做同样的事情。它们引起的电能质量问题,即电压的大小和角度、频率、有功和无功都得到了表达性的认可。由于从发电厂到用户端的古老电力基础设施现在被多个公用设施的增加所破坏,电能质量问题也显著增加。本文旨在将几种物联网(IoT)技术的概念实施到电力和通信基础设施中,因为它们能够良性循环、启用、放大和加强公用事业的发展。为了改善电压不平衡和其他电能质量问题,将这一概念应用于现有的电压调节技术(VRT)。结果表明,如果正确选择和设计设备和技术,基于物联网的通信概念是成功实现的。此外,通信层的分类以及传感器、执行器和仪表沿住宅馈线的协调也需要考虑。
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