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Study of faulty scenarios for a fault-tolerant multi-inverter-fed linear permanent magnet motor with coil short-circuit or inverter trip

机译:具有线圈短路或逆变器跳闸的容错多逆变器馈电线性永磁电动机的故障场景研究

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A fault-tolerant machine used for safety-critical tasks must a) guarantee at least a reduced-performance operation in case of partial machine fault and b) guarantee avoidance of drive mechanical jam/stall in case of total machine fault, to allow for the intervention of the back-up systems. Classical hydrostatic transmissions used on board ships for critical tasks such as rudder and stabilizing fin steering gears fulfill both the requirements a), b) above, but recent proposals for substitution with full-electric drives (rotary motors coupled with multistage reduction gears) usually do not. Especially the requirement b) needs particular attention and increased complexity when dealing with geared drives. This paper proposes a linear permanent-magnet direct drive fulfilling both the requirements above, for (but not limited to) rudder/fin steering gears. The absence of gears grants the requirement b), whereas the full-modular structure satisfies a), with independently fed stator modules and multiple inverters. This paper addresses some fault scenarios including electrical failures, in the machine winding (short-circuited coils) and in the inverters (trip of one or more units). The performance degradation is studied and assessed for the cases considered by both simulations and measurements on a prototype.
机译:用于安全关键任务的容错机器必须a)在部分机器故障的情况下至少保证性能降低的运行,以及b)在整个机器故障的情况下避免驱动机械卡死/停转,以实现以下目的:备用系统的干预。船上用于完成关键任务(例如方向舵和稳定鳍式舵机)的经典静液压传动装置既可以满足上述a),b)的要求,但最近提出的全电动驱动器(旋转电机与多级减速器耦合)的替代方案通常也可以满足要求。不是。特别是要求b)在处理齿轮传动时需要特别注意并增加复杂性。本文针对(但不限于)方向舵/鳍式舵机提出了一种满足上述两个要求的线性永磁直接驱动器。没有齿轮可以满足b)的要求,而全模块化结构可以满足a)的要求,并带有独立供电的定子模块和多个逆变器。本文介绍了一些故障情况,包括电机绕组(短路的线圈)和逆变器(一个或多个单元的跳闸)中的电气故障。对于通过仿真和原型测量考虑的情况,研究并评估了性能下降。

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