Photovoltaic Controller Design Based on Adaptive Volt/Var Algorithm to Stand the Impact of Load Increase in Grid Tied Microgrid System

Author:

Lumina Sampi D., ,Mnguni Mkhululi E. S.,Mfoumboulou Yohan Darcy

Abstract

This paper presents an efficient design and real-time implementation of a controller for a large-scale grid-tied photovoltaic (PV) plant in a power system affected by disturbances. To direct the adequate amount of solar power, an Adaptive voltage and volt-ampere reactive (Volt-VAr) algorithm implemented in real-time using the Real Time Digital Simulator (RTDS) is proposed. An efficient and self-sufficient active and reactive P-Q power control scheme is proposed and implemented to transfer the generated power of the PV to the grid using a Voltage Source Converter (VSC). The proposed controller is implemented along with the PV system considered in RTDS to evaluate its effectiveness. By considering the impact of the disturbance caused by the load increase, the efficiency of the proposed power controller to transmit the generated power of the PV plant to the electrical grid system is investigated. It is observed that the hardware in the loop results verifies the advantage of the proposed method.

Publisher

EJournal Publishing

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Instrumentation

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Optimization Scheduling of Multi-source Microgrids Considering Economic and Environmental Impacts;2024 6th Asia Energy and Electrical Engineering Symposium (AEEES);2024-03-28

2. Voltage Stability Control in Grid-Tied Photovoltaic Systems Considering Loading Effects;2024 32nd Southern African Universities Power Engineering Conference (SAUPEC);2024-01-24

3. High Voltage Ride- Through Control Strategy for Two-Stage PV Grid-Connected Systems;2023 2nd Asia Power and Electrical Technology Conference (APET);2023-12-28

4. Reactive Power Optimization Loss Reduction Strategy in Distribution Station Area Considering Active Load Synergy;2023 6th International Conference on Energy, Electrical and Power Engineering (CEEPE);2023-05-12

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