Stability Control of Frequency and Voltage in Wind Power Plant Using Complementary Load with Pid Control, Pwm and Thingspeak Monitor

Yuliana Hermanto, Agus Kiswantono
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Abstract

Utilization of wind energy (wind) that blows from a certain height which is then used to turn wind turbines and converted into electrical energy or so-called wind power plants (PLTB) is one solution to the problem of the energy crisis so far. In addition, voltage stability is very necessary in the continuity of the use of power plants. Unstable voltage and frequency make electrical equipment (load) easily damaged. There are various ways to reduce instability, one of which is using a pseudo/complementary load electronic control circuit. The point is that the generator will be loaded with a total load that is always constant, the load on the consumer plus the complementary (pseudo) load is equal to the nominal capacity of the generator. This research uses a 3 phase generator and a 3 phase induction motor as a driving machine, the main load uses a lamp and the pseudo load uses a heater. The main control uses a Dspic30f4012 microcontroller connected to a voltage sensor. The microcontroller works using PWM with feedback using PID, which then PWM provides pulse information to the load drive circuit. The use of PID in this control system will produce a voltage in the generator at 50 Hz and 220Vac whether there is a load or not. So that the voltage supplied to consumers is stable and does not damage electronic equipment.
基于Pid控制、Pwm和Thingspeak监视器的互补负荷风电场频率电压稳定控制
利用从一定高度吹来的风能(风),然后用来转动风力涡轮机,将其转化为电能或所谓的风力发电厂(PLTB),是迄今为止解决能源危机问题的一种方法。此外,电压稳定在电厂的连续使用中是非常必要的。不稳定的电压和频率使电气设备(负载)容易损坏。减少不稳定性的方法有很多种,其中一种是使用伪/互补负载电子控制电路。关键是发电机将加载总负载,总负载总是恒定的,消费者的负载加上补充(伪)负载等于发电机的标称容量。本研究采用三相发电机和三相感应电动机作为驱动机构,主负载采用灯,伪负载采用加热器。主控采用Dspic30f4012单片机连接电压传感器。微控制器使用PWM和PID反馈,然后PWM向负载驱动电路提供脉冲信息。在此控制系统中使用PID,无论是否有负载,都会在发电机中产生50hz和220Vac的电压。因此,提供给消费者的电压是稳定的,不会损坏电子设备。
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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