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Journal ArticleDOI

Distribution Voltage Control for DC Microgrids Using Fuzzy Control and Gain-Scheduling Technique

TLDR
In this paper, a low-voltage bipolar-type dc microgrid with two energy storage units and a dc/dc converter was proposed to achieve both power sharing and energy management.
Abstract
Installation of many distributed generations (DGs) could be detrimental to the power quality of utility grids. Microgrids facilitate effortless installation of DGs in conventional power systems. In recent years, dc microgrids have gained popularity because dc output sources such as photovoltaic systems, fuel cells, and batteries can be interconnected without ac/dc conversion, which contributes to total system efficiency. Moreover, high-quality power can be supplied continuously when voltage sags or blackouts occur in utility grids. We had already proposed a “low-voltage bipolar-type dc microgrid” and described its configuration, operation, and control scheme, through experiments. In the experiments, we used one energy storage unit with a dc/dc converter to maintain the dc-bus voltage under intentional islanding operation. However, dc microgrids should have two or more energy storage units for system redundancy. Therefore, we modified the system by adding another energy storage unit to our experimental system. Several kinds of droop controls have been proposed for parallel operations, some of which were applied for ac or dc microgrids. If a gain-scheduling control scheme is adopted to share the storage unit outputs, the storage energy would become unbalanced. This paper therefore presents a new voltage control that combines fuzzy control with gain-scheduling techniques to accomplish both power sharing and energy management. The experimental results show that the dc distribution voltages were within 340 V ± 5%, and the ratios of the stored energy were approximately equal, which implies that dc voltage regulation and stored energy balancing control can be realized simultaneously.

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Citations
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Journal ArticleDOI

Experimental Research on PMSM Ball Screw Actuator and Structural Design Suggestion of Featured Active Suspension

TL;DR: To reduce the amplified demand of the active control force caused by the actuator’s overlarge equivalent inertial mass directly exposed to the unsprung mass acceleration, the new DVRS based active suspension structure scheme suggestion with an added-vibration-reduction-structure (AVRS) between the actuators and the unsPrung mass is proposed.
Journal ArticleDOI

Control transition mode from voltage control to MPPT for PV generators in isolated DC microgrids

TL;DR: In this paper , the authors proposed a new control strategy for a PV generator for islanded DC microgrids without storage systems, which allows for smooth switching from the maximum power point mode to the voltage control regulation mode (V control) when the available PV power is excessive.
Proceedings ArticleDOI

Stored energy balance for distributed PV-based active generators in an AC microgrid

TL;DR: In this article, a decentralized strategy based on fuzzy logic is proposed for balancing the state of charge of the energy storage units for distributed PV-based active generators, which can be applied to a several number of power generators interconnected in a microgrid.
Journal ArticleDOI

Comprehensive evaluation index based on droop control for DC distribution system dispatching

TL;DR: An index based on droop control is proposed to evaluate operating state of flexible DC distribution networks, which becomes the foundation of dispatch and control and can underlie forming the industry standard for the performance assessment of the DC distribution network.
Journal ArticleDOI

High-Efficiency Floating Bidirectional Power Flow Controller for Next-Generation DC Power Network

TL;DR: The energy efficiency of BPFC is revealed and ways to improve the efficiency are studied and a novel structure is proposed of the BPFC, which drastically improves its efficiency, called the proposed structure floating bidirectional power flow controller (F-BPFC).
References
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Journal ArticleDOI

Hierarchical control of droop-controlled DC and AC microgrids — a general approach towards standardization

TL;DR: The hierarchical control derived from ISA-95 and electrical dispatching standards to endow smartness and flexibility to MGs is presented and results are provided to show the feasibility of the proposed approach.
Journal ArticleDOI

Progress in electrical energy storage system: A critical review

TL;DR: In this paper, a review of electrical energy storage technologies for stationary applications is presented, with particular attention paid to pumped hydroelectric storage, compressed air energy storage, battery, flow battery, fuel cell, solar fuel, superconducting magnetic energy storage and thermal energy storage.
Journal ArticleDOI

Adaptive Decentralized Droop Controller to Preserve Power Sharing Stability of Paralleled Inverters in Distributed Generation Microgrids

TL;DR: In this paper, an adaptive decentralized droop controller of paralleled inverter-based distributed generation (DG) units is presented to preserve the power sharing stability, which is based on the static droop characteristics combined with an adaptive transient droop function.
Journal ArticleDOI

Low-Voltage Bipolar-Type DC Microgrid for Super High Quality Distribution

TL;DR: In this paper, a low-voltage bipolar-type dc microgrid is proposed to supply super high quality power with three-wire dc distribution line. But, the proposed system is not suitable for large-scale systems.
Journal ArticleDOI

Fuzzy-Logic-Control Approach of a Modified Hill-Climbing Method for Maximum Power Point in Microgrid Standalone Photovoltaic System

TL;DR: In this article, a fuzzy-logic controller for maximum power point tracking of photovoltaic (PV) systems is proposed, which improves the hill-climbing search method by fuzzifying the rules of such techniques and eliminates their drawbacks.
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