基于Arduino UNO的线性和非线性负载功率因数、无功功率和THD降低自动优化控制

Saurabh B. Jarad, Vishal D. Lohar, Shubham P. Choukate, S. Mangate
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引用次数: 6

摘要

本文的目的是讨论交流系统的电能质量问题,由于电感负载、电子设备(线性和非线性负载)的使用迅速增加,交流系统的电能质量问题受到了人们的极大关注。由于系统中使用的感性负载的滞后功率因数,我们每天都浪费了一部分电能。因此,迫切需要避免这种能量的浪费,功率因数和无功功率的降低导致可靠性差,安全性问题和能源成本高。电力系统的功率因数由于一次使用的设备的大小和数量的不同而不断变化。这使得连续平衡电感和容性负载变得具有挑战性。提出了多种功率因数校正(PFC)控制方法。本文介绍了一种利用Arduino Uno微控制芯片设计和开发单相和三相功率因数校正、无功功率和THD补偿的精确计算技术。硬件实现采用Arduino Uno板进行开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic Optimization and Control of Power Factor, Reactive Power and Reduction of THD for Linear and Nonlinear Load by Using Arduino UNO
Aim of this paper is to discuss about power quality of the AC system, which has become a great concern due to the rapidly increased use of inductive loads, electronic equipment (Linear and Non linear load). We are wasting a part of the electrical energy everyday due to the lagging power factor in the inductive loads which is used in the system. Hence, there is an urgent need to avoid this wastage of energy, lower power factor and reactive power results in poor reliability, safety problems and high energy cost. The power factor of power system is continuously changing due to differences in the size and number of the equipment being used at a time. This makes it challenging to balance the inductive and capacitive loads continuously. Many control methods for the Power Factor Correction (PFC) were proposed. This paper presents a computationally accurate technique to design and development of a single phase as well as three phase power factor correction, reactive power and THD compensation using Arduino Uno micro-controlling chip. The hardware implementation is developed by using Arduino Uno board.
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