Research on Virtual Inductive Control Strategy for Direct Current Microgrid with Constant Power Loads
Open Access
- 20 October 2019
- journal article
- research article
- Published by MDPI AG in Applied Sciences
- Vol. 9 (20), 4449
- https://doi.org/10.3390/app9204449
Abstract
In order to improve the stability of direct current (DC) microgrid with constant power loads, a novel virtual inductive approach is proposed in this paper. It is known that the negative impedance characteristic of constant power loads will lead to DC bus voltage fluctuation, which will be more serious when they integrate into the DC microgrid though a large transmission line inductive. For the convenience of analysis, a simplified circuit model of the system is obtained by modeling the distributed resources. Unlike the existing control strategies, the proposed control strategy constructs a negative inductance link, which helps to counteract the negative effects of the line inductive between the power source and the transmission line. Detailed performance comparison of the proposed control and virtual capacitance are implemented through MATLAB/simulink simulation. Moreover, the improved performance of the proposed control method has been further validated with several detailed studies. The results demonstrate the feasibility and superiority of the proposed strategy.Keywords
This publication has 30 references indexed in Scilit:
- A Coordinated Droop Control Method Using a Virtual Voltage Axis for Power Management and Voltage Restoration of DC MicrogridsIEEE Transactions on Industrial Electronics, 2018
- Protection in DC microgrids: a comparative reviewIET Smart Grid, 2018
- Stability analysis of islanded DC microgrid for the proposed distributed control strategy with constant power loadsComputers and Electrical Engineering, 2018
- An overview of power quality enhancement techniques applied to distributed generation in electrical distribution networksRenewable and Sustainable Energy Reviews, 2018
- Stability analysis of DC microgrids with constant power load under distributed control methodsAutomatica, 2018
- Stability Analysis and Stabilization Methods of DC Microgrid With Multiple Parallel-Connected DC–DC Converters Loaded by CPLsIEEE Transactions on Smart Grid, 2016
- Modeling and Stability Analysis of Islanded DC Microgrids Under Droop ControlIEEE Transactions on Power Electronics, 2014
- Coordinated Droop Control for Stand-alone DC Micro-gridJournal of Electrical Engineering & Technology, 2014
- Constant-Power Load System Stabilization by Passive DampingIEEE Transactions on Power Electronics, 2011
- Detailed Analysis of Micro-Grid Stability during Islanding Mode under Different Load ConditionsEngineering, 2011