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Book ChapterDOI

Investigations of Microgrid Stability and Optimum Power Sharing Using Robust Control of Grid Tie PV Inverter

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TLDR
A novel method to establish robust control and stability of microgrid connected with photovoltaic (PV) grid tie inverter, battery storage with bidirectional inverters, and diesel generator is demonstrated.
Abstract
This paper demonstrates a novel method to establish robust control and stability of microgrid connected with photovoltaic (PV) grid tie inverter, battery storage with bidirectional inverter, and diesel generator. The proposed control scheme enables optimum power sharing among the sources based on the changes in generation due to intermittent nature of PV source and level of energy stored in battery. Power flow control has been achieved by varying the active power generated by the PV inverter as a function of the system frequency in the islanded mode of operation. Detailed analysis has been carried out in MATLAB/Simulink tool and the captured results are found to effective and same has been confirmed with hardware prototype setup with PV inverter and bidirectional battery charger.

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Citations
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Journal ArticleDOI

Investigation on Sizing of Voltage Source for a Battery Energy Storage System in Microgrid With Renewable Energy Sources

TL;DR: Analysis of the analytical methodology that can be adopted for identifying the most suitable rating of the VS which can act as a voltage and frequency reference for the BESS using Matlab/Simulink finds an Uninterruptible Power Supply with an overload capacity of 150-200% can be chosen as a feasible choice to act as the VS.
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Minimization of Load Variance in Power Grids—Investigation on Optimal Vehicle-to-Grid Scheduling

TL;DR: In this article, the authors presented an optimal scheduling of vehicle-to-grid using the genetic algorithm to minimize the power grid load variance, which is achieved by allowing electric vehicles charging (grid-tovehicle) whenever the actual power grid loading is lower than the target loading, while conducting electric vehicle discharging (vehicle-togrid) whenever a higher load is higher than target loading.
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Communication-Less Primary and Secondary Control in Inverter-Interfaced AC Microgrid: An Overview

TL;DR: Inverters in microgrids face significant challenges during their parallel operations, such as accurate power sharing, deviations in system voltage magnitude and frequency, and imbalance between generation and load demand, so centralized and distributed control techniques at the secondary control layer are needed.
Journal ArticleDOI

Study and Analysis of an Intelligent Microgrid Energy Management Solution with Distributed Energy Sources

TL;DR: In this paper, a robust energy management solution which will facilitate the optimum and economic control of energy flows throughout a microgrid network is proposed, which enables precise management of power flows by forecasting of renewable energy generation, estimating the availability of energy at storage batteries, and invoking the appropriate mode of operation, based on the load demand to achieve efficient and economic operation.
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Grid-Tied Photovoltaic and Battery Storage Systems with Malaysian Electricity Tariff—A Review on Maximum Demand Shaving

TL;DR: In this paper, the authors review the technical assessment methods of a grid-connected solar photovoltaic (PV) battery storage system with respect to maximum demand shaving with good Return-of-Investment (ROI).
References
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Coordinated V-f and P-Q Control of Solar Photovoltaic Generators With MPPT and Battery Storage in Microgrids

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Control for microgrids with inverter connected renewable energy resources

TL;DR: In this article, a control scheme for power sharing in islanded microgrids with inverter-sourced distributed energy resources that combines robust control and droop control is presented.
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