An alternative design and implementation of a solid state on-load tap changer

Benjamin Kommey, E. Tamakloe, Gideon Adom-Bamfi, D. Opoku
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Abstract

Power quality and reliability are of great importance in the modern world, whether it be the power generated by the power utilities or the power consumed by the customer respectively. They need these supplies to be at its optimum value so that the cost is effective, and the safety of devices assured otherwise problems such as overvoltage, under-voltage, and voltage sags caused by disturbances in the power supply could be disastrous. On-load tap changers (OLTC) have therefore been used since the inception of electrical engineering. The main function of the OLTC is to change the turns of the transformer winding so that the voltage variations are limited without interrupting the secondary current.The major idea is that the electronic switches and other smart systems provide more controllability during the tap changing process, unlike mechanical switches.This paper presents an alternative design and implementation of a low-cost solid-state OLTC and employs a control strategy that is microcontroller-based, ensuring the desired flexibility and controllability required in programming the control algorithms.It eliminates the limitations of both mechanical and hybrid OLTCs (arcing, slow response time, losses) and is user-friendly (provides an effective communication medium). Voltage regulation is achieved by varying the turns of the transformer winding whiles it is energized, supplying load current and with the tap selection carried out on the primary side. Therefore, this approach provides a less expensive system but ensures the efficiency and reliability of voltage regulation.
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一种固态有载分接开关的替代设计与实现
在现代世界,电能质量和可靠性至关重要,无论是电力公司发电还是客户耗电。他们需要这些电源处于其最佳值,这样成本才是有效的,并且设备的安全性也得到了保证,否则,由电源干扰引起的过电压、欠电压和电压骤降等问题可能是灾难性的。因此,自电气工程开始以来,就一直在使用有载分接开关(OLTC)。OLTC的主要功能是改变变压器绕组的匝数,从而在不中断次级电流的情况下限制电压变化。主要想法是,与机械开关不同,电子开关和其他智能系统在分接转换过程中提供了更多的可控性。本文提出了一种低成本固态OLTC的替代设计和实现,并采用了一种基于微控制器的控制策略,确保了控制算法编程所需的灵活性和可控性。它消除了机械和混合OLTC的限制(电弧、响应时间慢、损耗),并且用户友好(提供了一种有效的通信介质)。电压调节是通过在变压器绕组通电时改变其匝数、提供负载电流以及在初级侧进行抽头选择来实现的。因此,这种方法提供了一种成本较低的系统,但确保了电压调节的效率和可靠性。
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CiteScore
0.70
自引率
0.00%
发文量
10
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