Energy saving IoT-based advanced load limiter

Basri Kul, Mehmet Şen
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引用次数: 5

Abstract

A load limiter is particularly needed in places like microgrid business centers because the load limit that the microgrid structure can handle must not be exceeded. This study aimed at keeping load variation under control by planning daytime load distribution using IoT-based energy measurement and central management software. By using IP-based smart meters and control methods to perform energy measurements, all loads on the microgrid can be loaded in a balanced manner from the centralized software. Moreover, load balance across the grid can be protected by shutting off the relevant overcurrent devices. By setting the load limits for certain zones at specific times of the day, both the electrical devices and the microgrid are safeguarded. In heating and cooling applications, when all components on the grid are overloading the microgrid, other electrical appliances are prevented from exceeding the permitted current limits. Thus, installation of the system results in energy saving and reduced costs. Details are shown in this study.
基于节能物联网的先进限载器
在微电网业务中心这样的地方尤其需要负载限制器,因为微电网结构可以处理的负载限制不能超过。本研究旨在通过使用基于物联网的能源测量和中央管理软件来规划白天的负荷分配,从而控制负荷变化。通过使用基于ip的智能电表和控制方法进行能量测量,可以通过集中软件均衡地加载微电网上的所有负载。此外,可以通过关闭相关过流设备来保护整个电网的负载平衡。通过在一天中的特定时间为某些区域设置负载限制,电力设备和微电网都得到了保障。在加热和冷却应用中,当电网上的所有组件都使微电网过载时,其他电器被防止超过允许的电流限制。因此,安装该系统可以节省能源并降低成本。详细情况见本研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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