91 research outputs found

    Hierarchical Control for Optimal and Distributed Operation of Microgrid Systems

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    On the Impact of Wireless Jamming on the Distributed Secondary Microgrid Control

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    The secondary control in direct current microgrids (MGs) is used to restore the voltage deviations caused by the primary droop control, where the latter is implemented locally in each distributed generator and reacts to load variations. Numerous recent works propose to implement the secondary control in a distributed fashion, relying on a communication system to achieve consensus among MG units. This paper shows that, if the system is not designed to cope with adversary communication impairments, then a malicious attacker can apply a simple jamming of a few units of the MG and thus compromise the secondary MG control. Compared to other denial-of-service attacks that are oriented against the tertiary control, such as economic dispatch, the attack on the secondary control presented here can be more severe, as it disrupts the basic functionality of the MG

    Constant Power Load Instability Mitigation in DC Shipboard Power Systems Using Negative Series Virtual Inductor Method

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    Comparative Admittance-based Analysis for Different Droop Control Approaches in DC Microgrids

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    Optimization with System Damping Restoration for Droop Controlled DC-DC Converters

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    Stability Constrained Efficiency Optimization for Droop Controlled DC-DC Conversion System

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    Optimal Planning and Operation Management of a Ship Electrical Power System with Energy Storage System

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