Fault diagnosis algorithm based on switching function for boost converters

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초록

A fault diagnosis algorithm, which is necessary for constructing a reliable power conversion system, should detect fault occurrences as soon as possible to protect the entire system from fatal damages resulting from system malfunction. In this paper, a fault diagnosis algorithm is proposed to detect open- and short-circuit faults that occur in a boost converter switch. The inductor voltage is abnormally kept at a positive DC value during a short-circuit fault in the switch or at a negative DC value during an open-circuit fault condition until the inductor current becomes zero. By employing these abnormal properties during faulty conditions, the inductor voltage is compared with the switching function to detect each fault type by generating fault alarms when a fault occurs. As a result, from the fault alarm, a decision is made in response to the fault occurrence and the fault type in less than two switching time periods using the proposed algorithm constructed in analogue circuits. In addition, the proposed algorithm has good resistivity to discontinuous current-mode operation. As a result, this algorithm features the advantages of low cost and simplicity because of its simple analogue circuit configuration.

키워드

open- and short-circuit faults; fault diagnosis algorithm; reliability; DC-DC boost converter; DC-DC CONVERTERS; POWER ELECTRONIC CONVERTERS; VOLTAGE; INVERTER; RELIABILITY; DESIGN; MODE; METHODOLOGY; CAPACITORS; ONLINE
제목
Fault diagnosis algorithm based on switching function for boost converters
저자
Cho, H.-K.; Kwak, S.-S.; Lee, S.-H.
DOI
10.1080/00207217.2014.966780
발행일
2015-07
유형
Article
저널명
International Journal of Electronics
권
102
호
7
페이지
1229 ~ 1243