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Journal ArticleDOI

Adaptive-SMC Based Output Impedance Shaping in DC Microgrids Affected by Inverter Loads

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TLDR
An adaptive sliding mode control based output impedance shaping (ASMC-OIS) methodology is proposed for voltage regulation, proportional load sharing, and second-order ripple management in a dc microgrid.
Abstract
Inverter connected single-phase AC loads cause second-order oscillations in source currents and DC bus voltage. These oscillations degrade the efficiency and reliability of the dc microgrid. In this paper, an adaptive sliding mode control based output impedance shaping (ASMC-OIS) methodology is proposed for voltage regulation, proportional load sharing, and second-order ripple management in a dc microgrid. By using the proposed control method, the magnitude of the output impedance of the source interfacing converter is increased at 2 $f_{ac}$ programmably, which results in the reduction of second-order ripple currents propagating through the converter. Instead, it is propagated to the dc-link capacitor or towards the nodes which consists of some ripple absorption active or passive filter. This leads to an increase in the energy density of the ripple filters. The dynamic consensus-based secondary control is incorporated to ensure proportional load current sharing. A graph theoretical analysis is presented to analyze per unit load sharing among all the nodes. Stability of the proposed controller is analyzed considering multiple source nodes using Lyapunov's approach. A dc microgrid consisting of parallel-connected dc-dc boost converters, dc load, and inverter load is simulated to verify the proposed control strategy. The proposed ASMC-OIS methodology is validated through experimentation.

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Citations
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Journal ArticleDOI

A Second Harmonic Current Suppressing Method Based on Negative-Order Capacitor

TL;DR: In this paper , a fractional-order capacitor (FOC) was proposed to suppress the second harmonic current (SHC) in a microgrid system, which has the same characteristics of dc blocking and ac conducting as conventional capacitors.
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Reinforced Demand Side Management for Educational Institution with incorporation of User’s Comfort

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Journal ArticleDOI

Negative Imaginary Theory-Based Proportional Resonant Controller for Voltage Control of Three-Phase Islanded Microgrid

TL;DR: This paper demonstrates the design of robust proportional resonant (PR) controller using negative imaginary (NI) theorem for voltage control of three-phase islanded microgrid (MG) application and examines the stability and effectiveness of this controller.
Journal ArticleDOI

Decentralized and Coordinated Vf Control for Islanded Microgrids Considering DER Inadequacy and Demand Control

TL;DR: In this paper , a decentralized and coordinated voltage and frequency (Vf) control framework for islanded micro-grids is proposed, with full consideration of the limited capacity of distributed energy resources (DERs) and Vf dependent load.
Journal ArticleDOI

Design of adaptive sliding mode controller applied to ultrasonic motor

Gangfeng Yan
- 23 Nov 2021 - 
TL;DR: In this article, a sliding mode controller without chattering is designed and applied to the control of ultrasonic motors, which achieves high-precision sliding mode control without chatter.
References
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Journal ArticleDOI

Consensus problems in networks of agents with switching topology and time-delays

TL;DR: A distinctive feature of this work is to address consensus problems for networks with directed information flow by establishing a direct connection between the algebraic connectivity of the network and the performance of a linear consensus protocol.
Book

Sliding mode control : theory and applications

TL;DR: This text provides the reader with a grounding in sliding mode control and is appropriate for the graduate with a basic knowledge of classical control theory and some knowledge of state-space methods.
Journal ArticleDOI

Variable structure control: a survey

TL;DR: A tutorial account of variable structure control with sliding mode is presented, introducing in a concise manner the fundamental theory, main results, and practical applications of this powerful control system design approach.
Journal ArticleDOI

Distributed Control to Ensure Proportional Load Sharing and Improve Voltage Regulation in Low-Voltage DC Microgrids

TL;DR: In this paper, a decentralized controller for DC microgrid is proposed to achieve high reliability, low-voltage regulation, and equal load sharing, utilizing low-bandwidth communication.
Journal ArticleDOI

Minimum Energy and Capacitance Requirements for Single-Phase Inverters and Rectifiers Using a Ripple Port

TL;DR: In this article, a ripple power port is proposed to manage energy storage and decouple capacitor ripple from power ripple, allowing the designer to make a choice of capacitor voltage independent of other system voltages.
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