Detection of Sensor Fault in a DC Microgrid Using Supertwisting Observer

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초록

The detection of sensor faults in a direct current (DC) microgrid is essential to provide a safe and uninterrupted supply of power. The fault detection techniques in the DC microgrid should involve immediate sensor fault detections to protect the system from adverse effects. To address this issue, in this paper, a fault detection technique is designed which addresses the scenario where the interconnected distributed generation units (DGUs) are affected by sensor faults in a DC microgrid. Multiplicative faults in the grid-connected voltage and current sensors are considered. A model-based multiple sliding mode observers (HOSM) are designed to estimate the states of the DGUs, and faulty sensors are detected based on the generated residuals. The stability of the overall microgrid system can be achieved by designing a hierarchical controller which ensures uniform current sharing among all the DGUs. The validation of the proposed method is supported through extensive MATLAB simulations for various arrangements of the DC microgrid subjected to numerous known and unknown disturbances. A common threshold is selected from the multiple simulations for sensor fault detection. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.

키워드

DC microgrid; DGUs; Fault detection; HOSM observer; LMI; Renewable energy; Sensor faults
제목
Detection of Sensor Fault in a DC Microgrid Using Supertwisting Observer
저자
Narzary, Daijiry; Swain, Subrat Kumar; Rath, Jagat Jyoti; Veluvolu, Kalyana Chakravarthy
DOI
10.1007/978-981-16-7660-4_12
발행일
2022
유형
Book chapter
저널명
Lecture Notes in Intelligent Transportation and Infrastructure
권
Part F1361
페이지
133 ~ 145