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Power Quality Enhancement on Hybrid Power Plants Using Shunt Passive Power Filter and Detuned Reactor

机译:使用分流器无源电力滤波器和拆开反应器的混合动力厂电力质量增强

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Renewable energy can cause problems in the quality of electric power, such as harmonics. The reason is that solar power plants and wind power plants use power electronic instruments such as inverters, rectifiers, buck, boosts, and so on. These devices are used to charge batteries and are also used for load supplies. Electronic power devices can cause hormones in the electric power system if connected to the grid. For this reason, power quality assessment is needed on the power system, whether THD (Total Harmonic Distortion) more than the tolerance limit of 5 percent. If THD more than 5 percent, mitigation is needed to reduce THD. This research was carried out in the laboratory Department of Electrical Engineering. The results of the THD-V measurement at this location are 19,19%. The method uses a shunt passive filter and detuned reactor to reduce THD. This research will be made into 2 scenarios. The first scenario uses only a shunt passive filter and the second scenario uses a hybrid shunt passive filter with the detuned reactor. The purpose of being made into 2 scenarios is to prove that the detuned reactor can optimize the shunt passive filter. The results of these scenarios are the first scenario, harmonic mitigation using only the passive shunt filter can reduce THD-V to 3,39 percent. The second scenario is that harmonic mitigation using a combination of passive shunt filter and the detuned reactor can reduce the THD-V to 3,07 percent. It can be concluded that the role of the detuned reactor can improve the performance of shunt passive filters. Detuned reactor functions to limit the current entering the filter and can reduce the harmonic effects arising from the harmonic filter itself.
机译:可再生能源可能导致电力质量问题,如谐波。原因是太阳能发电厂和风力发电厂使用逆变器,整流器,降压,升压等电力电子仪器等。这些设备用于对电池充电,也用于负载供应。如果连接到电网,电子电源器件会导致电力系统中的激素。因此,在电力系统上需要电能质量评估,无论是超过5%的公差限制吗?如果THD超过5%,则需要减少减少THD。该研究是在电气工程实验室进行的。该位置的THD-V测量结果为19,19%。该方法使用分流器无源滤波器和旋转反应器来减少THD。这项研究将进入2场景。第一个场景仅使用并联无源滤波器,第二种情况使用混合分流器无源过滤器与旋转反应器。被制成2场景的目的是证明失谐的反应器可以优化并联无源滤波器。这些场景的结果是第一种情况,仅使用被动分流过滤器的谐波缓解,可以将THD-V降低至3,39%。第二种情况是使用被动分流过滤器和旋转反应器的组合的谐波缓解可以将THD-V的THD-V达到3,07%。可以得出结论,失谐反应器的作用可以提高分流器无源过滤器的性能。旋转反应器的功能限制进入过滤器的电流,可以减少谐波滤波器本身引起的谐波效应。

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