Improvement of Power Quality using DVR by Different Control Techniques
Sukanth, Harika1, Singam Jayanthu2, Jaya Lakshmi3

1Sukanth, Asst.Professor, Department of EEE, Bharat Institute of Engineering&Technology,Hyderabad,India.
2Harika ,M.Tech student, Department of EEE, Bharat Institute of Engineering&Technology,Hyderabad,India.
3Dr. Singam Jayanthu, Professor, Department of MN, NIT Rourkela, Odisha, India.
4Dr. A. Jaya Lakshmi, Professor, Department of EEE, JNTUH, Hyderabad, India.

Manuscript received on 06 August 2019. | Revised Manuscript received on 12 August 2019. | Manuscript published on 30 September 2019. | PP: 7366-7369 | Volume-8 Issue-3 September 2019 | Retrieval Number: C6123098319/2019©BEIESP | DOI: 10.35940/ijrte.C6123.098319
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Power quality has been an issue in electrical power systems. Disturbances occur in power quality which effects machines, some electric devices and severe cause will get very serious damages. For normal and efficient operation it’s necessary to compensate and acknowledge every type of the disturbances at earlier time of the power system. Many sorts of Custom Power Devices (CPD’s) are used to resolve these issues .Here at present, one in every of those devices, Dynamic Voltage restorer (DVR) is conferred. In power distribution systems this is often best and effective device employed. During this project new structure and control methodology of multifunctional DVRs for voltage quality correction are mentioned. Proportional Integral Controller and Fuzzy Logic Controller are used for the PQ improvement. The performance of the device and Total Harmonic Distortion is compared with each other. The performance of the device like voltage swell, sag is projected.
Keywords: Power Quality (PQ), Custom Power Devices (CPD’s), Dynamic Voltage Restorer (DVR), Proportional Integral Controller, Fuzzy Logic Controller, Voltage sag, Voltage Source Inverter, Voltage swell.

Scope of the Article:
Fuzzy Logics