2019
DOI: 10.3390/en12112049
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Black-Box Behavioral Modeling of Voltage and Frequency Response Characteristic for Islanded Microgrid

Abstract: The voltage and frequency response model of microgrid is significant for its application in the design of secondary voltage frequency controller and system stability analysis. However, most models developed for this aspect are complex in structure due to the difficult mechanism modeling process and are only suitable for offline identification. To solve these problems, this paper proposes a black-box modeling method to identify the voltage and frequency response model of microgrid online. Firstly, the microgrid… Show more

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Cited by 7 publications
(2 citation statements)
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“…Modern distributed energy systems are based upon commercial converters [54][55][56], with lack of information to build conventional white box models. Therefore, among various techniques mentioned above g-parameters based behavioral modeling would be most effective [57].…”
Section: System Level Modelingmentioning
confidence: 99%
“…Modern distributed energy systems are based upon commercial converters [54][55][56], with lack of information to build conventional white box models. Therefore, among various techniques mentioned above g-parameters based behavioral modeling would be most effective [57].…”
Section: System Level Modelingmentioning
confidence: 99%
“…In reference [9], the communication system delay and ultra-capacitor size along with the parameters of the secondary controller have been obtained by using a Non-dominated Sorting Genetic Algorithm II (NSGA-II). Reference [10] has proposed a black-box modeling method to identify the voltage and frequency response model of microgrids. The microgrid has been considered a two-input two-output black-box system and the simplicity of the modeling can be met by input and output ports, while the model parameters can be adjusted by the change of microgrid operating structure, which makes the model more adaptable.…”
Section: Advanced Smart Gridsmentioning
confidence: 99%