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Optimization on magnetic trip used in hydraulic-magnetic circuit breakers based on Taylor approximation

机译:基于泰勒近似的液压 - 磁断路器磁跳闸优化

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Insufficient unlocking torque provided by the magnetic trip in circuit breaker at low over-current may lead to a certain probability of trip failure in a batch of breakers, which lowers the qualified rate and the quality consistency. The existing solutions to improve the unlocking torque of product batches are mostly based on single factor analysis and optimization, but the impact of multiple factor interactions on product performance are neglected. In this paper, finite element model of the magnetic trip is firstly established, and the key dimensions that affect the unlocking torque are determined and parameterized. Then, a fast approximating model for calculating the unlocking torque is established based on Taylor expansion method in their possible varying ranges, considering the influence of independent term, interactive term and error term for improving the accuracy. Signal-to-noise ratio and sensitivity of each dimension are analyzed by using the orthogonal test method to determine their significance, and the optimized dimensions of key parts in the magnetic trip are obtained. Finally, a batch of the circuit breakers with both the original and the optimized dimensions are manufactured, and the effectiveness of the optimized design method is verified by comparing the median and standard deviation of both the unlocking torques and the tailored time delays under a series of overload current multiples.
机译:在低过电流下断路器中的磁跳闸提供的解锁扭矩不足可能导致一批断路器中的跳闸失效概率,这降低了合格率和质量稠度。提高产品批次解锁扭矩的现有解决方案主要是基于单因素分析和优化,但多因素相互作用对产品性能的影响忽略了。本文首先建立了磁跳闸的有限元模型,并确定和参数化影响解锁扭矩的关键尺寸。然后,考虑到改善精度,基于其可能的不同范围,基于泰勒扩展方法建立了一种用于计算解锁扭矩的快速近似模型,考虑到改善精度。通过使用正交试验方法确定其意义来分析每个尺寸的信噪比和灵敏度,并且获得磁跳闸中的关键部件的优化尺寸。最后,制造了一批具有原始和优化尺寸的断路器,并且通过比较解锁扭矩的中位数和标准偏差和一系列的定制时间延迟来验证优化设计方法的有效性过载电流倍数。

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