4.6 Article

A Comprehensive Survey on Fault Tolerance in Multiphase AC Drives, Part 2: Phase and Switch Open-Circuit Faults

期刊

MACHINES
卷 10, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/machines10030221

关键词

derating factor; dual three-phase; fault diagnosis; fault tolerance; five phase; motor drives; multiphase machines; stator winding configurations; topologies; variable speed drives; voltage-source converters

资金

  1. Government of Galicia [ED431F 2020/07, GPC-ED431B 2020/03]
  2. Ministry of Science, Innovation and Universities under Ramon y Cajal Grant [RYC2018-024407-I]
  3. Spanish State Research Agency (AEI) [PID2019-105612RB-I00/AEI/10.13039/501100011033]
  4. Government of Andalusia [UMA20-FEDERJA-039]

向作者/读者索取更多资源

This paper reviews fault tolerance techniques in multiphase drives. Phase/switch open-circuit faults are particularly focused on, as they have received the most attention in the literature. Various fault-tolerant solutions and fault detection methods have been proposed for these faults. This survey is of great interest to the research community and industry.
Multiphase machines are very convenient for applications that require high reliability. In this two-part survey, the state of the art about fault tolerance in multiphase drives is reviewed. In Part 1, an overview including numerous fault types was presented, along with fundamental notions about multiphase drives. Here, in Part 2, the focus is placed on phase/switch open-circuit (OC) faults in particular, which have received the most attention in the literature. Phase OC failures involve OCs in stator phases or in converter-machine connections, and switch/diode OCs are frequently dealt with similarly or identically. Thanks to the phase redundancy of multiphase drives, their operation can be satisfactorily continued under a certain number of OCs. Nonetheless, the procedure to follow for this purpose is far from unique. For given OC fault conditions, numerous fault-tolerant possibilities can be found in the literature, each of them with different advantages and disadvantages. Moreover, a great variety of methods have also been devised to detect and diagnose phase/switch OC failures so that, as soon as possible, the most appropriate fault-tolerance measures are applied. Thus, given the broad literature about tolerance to phase/switch OC faults in multiphase drives, the survey presented here is expected to be of great interest for the research community and industry.

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