A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation

The present research investigations in power management fraternity are focused towards the realization of smart microgrid (MG) technologies. Due to intrinsic advantages of Direct Current (DC) system in terms of compatibility with power generation sources, modern loads and storage devices, DC MG has...

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Main Authors: K. M. Bhargavi, N. S. Jayalakshmi, D. N. Gaonkar, Ashish Shrivastava, Vinay Kumar Jadoun
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9358188/
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spelling doaj-857fba3c088e45b08d2891cffac7406c2021-03-30T15:07:15ZengIEEEIEEE Access2169-35362021-01-019321963222810.1109/ACCESS.2021.30605049358188A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System OperationK. M. Bhargavi0N. S. Jayalakshmi1https://orcid.org/0000-0002-0882-6283D. N. Gaonkar2Ashish Shrivastava3Vinay Kumar Jadoun4https://orcid.org/0000-0002-3373-8613Department of Electrical and Electronics Engineering, Manipal Institute of Technology (MIT), Manipal Academy of Higher Education, Manipal, IndiaDepartment of Electrical and Electronics Engineering, Manipal Institute of Technology (MIT), Manipal Academy of Higher Education, Manipal, IndiaDepartment of Electrical and Electronics Engineering, National Institute of Technology Karnataka (NITK), Mangalore, Surathkal, IndiaDepartment of Electrical Engineering, Manipal University Jaipur, Jaipur, IndiaDepartment of Electrical and Electronics Engineering, Manipal Institute of Technology (MIT), Manipal Academy of Higher Education, Manipal, IndiaThe present research investigations in power management fraternity are focused towards the realization of smart microgrid (MG) technologies. Due to intrinsic advantages of Direct Current (DC) system in terms of compatibility with power generation sources, modern loads and storage devices, DC MG has becoming popular over Alternate Current (AC) system. A secondary voltage and current control schemes of DC MG system are mainly based on the distributed consensus control of Multi-agent system (MAS) to balance generation and the demand. The basic concern of the cooperative control of MAS is consensus, which is to design a suitable control law such that the output of all agents can achieve synchronization. The distributed consensus algorithm requires much less computational power and information exchange in between the neighbor's agent. Meanwhile the other controllers such as model predictive control (MPC) requires accurate dynamic models with high computational cost and it suffers from lack of flexibility. The hierarchical consensus control technique is classified into three levels according to their features, namely primary, secondary, and tertiary. MAS is a popular distributed platform to efficiently manage the secondary control level for synchronization and communication among the power converters in autonomous MGs. In this article, various primary control techniques for local voltage control, voltage restoration in the secondary control level and tertiary control for energy management techniques are discussed. With this, the key emphasis to reduce the voltage deviation and disturbances in a heterogeneous DC MG network solutions are discussed. Furthermore, to analyze the system response and the charging and discharging characteristics of the battery unit, the developed second order heterogeneous consensus controller is compared with the traditional homogeneous consensus control and droop control methods. Finally a detailed discussion on simulation case study using heterogeneous consensus control method over the traditional methods are provided using MATLAB/Simulink platform.https://ieeexplore.ieee.org/document/9358188/Communication delayDC microgriddistributed generation sourcesdistributed controlenergy storage unithierarchical control technique
collection DOAJ
language English
format Article
sources DOAJ
author K. M. Bhargavi
N. S. Jayalakshmi
D. N. Gaonkar
Ashish Shrivastava
Vinay Kumar Jadoun
spellingShingle K. M. Bhargavi
N. S. Jayalakshmi
D. N. Gaonkar
Ashish Shrivastava
Vinay Kumar Jadoun
A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
IEEE Access
Communication delay
DC microgrid
distributed generation sources
distributed control
energy storage unit
hierarchical control technique
author_facet K. M. Bhargavi
N. S. Jayalakshmi
D. N. Gaonkar
Ashish Shrivastava
Vinay Kumar Jadoun
author_sort K. M. Bhargavi
title A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
title_short A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
title_full A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
title_fullStr A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
title_full_unstemmed A Comprehensive Review on Control Techniques for Power Management of Isolated DC Microgrid System Operation
title_sort comprehensive review on control techniques for power management of isolated dc microgrid system operation
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description The present research investigations in power management fraternity are focused towards the realization of smart microgrid (MG) technologies. Due to intrinsic advantages of Direct Current (DC) system in terms of compatibility with power generation sources, modern loads and storage devices, DC MG has becoming popular over Alternate Current (AC) system. A secondary voltage and current control schemes of DC MG system are mainly based on the distributed consensus control of Multi-agent system (MAS) to balance generation and the demand. The basic concern of the cooperative control of MAS is consensus, which is to design a suitable control law such that the output of all agents can achieve synchronization. The distributed consensus algorithm requires much less computational power and information exchange in between the neighbor's agent. Meanwhile the other controllers such as model predictive control (MPC) requires accurate dynamic models with high computational cost and it suffers from lack of flexibility. The hierarchical consensus control technique is classified into three levels according to their features, namely primary, secondary, and tertiary. MAS is a popular distributed platform to efficiently manage the secondary control level for synchronization and communication among the power converters in autonomous MGs. In this article, various primary control techniques for local voltage control, voltage restoration in the secondary control level and tertiary control for energy management techniques are discussed. With this, the key emphasis to reduce the voltage deviation and disturbances in a heterogeneous DC MG network solutions are discussed. Furthermore, to analyze the system response and the charging and discharging characteristics of the battery unit, the developed second order heterogeneous consensus controller is compared with the traditional homogeneous consensus control and droop control methods. Finally a detailed discussion on simulation case study using heterogeneous consensus control method over the traditional methods are provided using MATLAB/Simulink platform.
topic Communication delay
DC microgrid
distributed generation sources
distributed control
energy storage unit
hierarchical control technique
url https://ieeexplore.ieee.org/document/9358188/
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