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Open AccessJournal ArticleDOI

Control Design and Voltage Stability Analysis of a Droop-Controlled Electrical Power System for More Electric Aircraft

TLDR
The theoretical analysis is instrumental in designing an optimally stable single dc bus EPS and provides a stability analysis based on the derivation of the output impedance of the source subsystem and input impedance ofThe load subsystem, including control dynamics.
Abstract
This paper focuses on the analysis of a single dc bus multigenerator electrical power system (EPS) for future more electric aircraft. Within such a single bus paradigm, the paper proposes a detailed control design procedure and provides a stability analysis based on the derivation of the output impedance of the source subsystem and input impedance of the load subsystem, including control dynamics. The single bus characteristic is analyzed and the stability properties of the EPS are investigated when supplying constant power loads. In addition, the paper highlights the impact on stability of the number of parallel sources and of the power sharing ratio. The theoretical analysis is instrumental in designing an optimally stable single dc bus EPS. The key findings are validated by experimental results.

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Citations
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Journal ArticleDOI

On-Board Microgrids for the More Electric Aircraft—Technology Review

TL;DR: An overview of technology related to on-board microgrids for the more electric aircraft, where security of supply and power density represents the main requirements, is presented.
Journal ArticleDOI

Electric Power Systems in More and All Electric Aircraft: A Review

TL;DR: Unless the discussed challenges are satisfactorily addressed and solved, arriving at an AEA that can properly operate over commercial missions will not be possible.
Journal ArticleDOI

Primary and secondary control in DC microgrids: a review

TL;DR: An overview of the primary and secondary control methods under the hierarchical control architecture for DC MGs is provided, specifically, inner loop and droop control approaches in primary control are reviewed.
Journal ArticleDOI

Review of Power Sharing, Voltage Restoration and Stabilization Techniques in Hierarchical Controlled DC Microgrids

TL;DR: Various control approaches have been reviewed to match the impedance, such as the nonlinear disturbance observer (NDO) feedforward compensation method, linear programming algorithm, hybrid potential theory and linear system analysis of polyhedral uncertainty.
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A Quadruple Active Bridge Converter for the Storage Integration on the More Electric Aircraft

TL;DR: This paper proposes the use of a quadruple active bridge converter, already employed in other fields, to interface a fuel cell, a battery, and a supercapacitor bank to the dc bus of the EPDS, aimed at increasing the penetration of electric systems on aircrafts.
References
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Journal ArticleDOI

Advanced Control Architectures for Intelligent Microgrids—Part I: Decentralized and Hierarchical Control

TL;DR: Decentralized, distributed, and hierarchical control of grid-connected and islanded microgrids that mimic the behavior of the mains grid is reviewed.
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DC Microgrids—Part I: A Review of Control Strategies and Stabilization Techniques

TL;DR: In this paper, a review of control strategies, stability analysis, and stabilization techniques for dc microgrids is presented, where overall control is systematically classified into local and coordinated control levels according to respective functionalities in each level.
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Constant power loads and negative impedance instability in automotive systems: definition, modeling, stability, and control of power electronic converters and motor drives

TL;DR: Sliding-mode and feedback linearization techniques along with large-signal phase plane analysis are presented as methods to analyze, control, and stabilize automotive converters/systems operating with CPLs.
Journal ArticleDOI

Modeling and Analysis of Harmonic Stability in an AC Power-Electronics-Based Power System

TL;DR: In this article, an impedance-based analytical approach is employed and expanded to a meshed and balanced three-phase network which is dominated by multiple current and voltage-controlled inverters with LCL-and LC-filters.
Journal ArticleDOI

Secondary Frequency and Voltage Control of Islanded Microgrids via Distributed Averaging

TL;DR: In this paper, a distributed controller for secondary frequency and voltage control in islanded microgrids is proposed, which uses localized information and nearest-neighbor communication to collectively perform secondary control actions.
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