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Hold current effects on the power losses of high-speed solenoid valve for common-rail injector

机译:保持电流对共轨喷射器高速电磁阀电源损耗的影响

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In the present investigation, a simulation of the dynamic response of a high-speed solenoid valve (HSV) has been performed. The influences of hold current I on the dynamic characteristics and power losses of a HSV have been investigated through the finite-element methods (FEM). The simulation results show that as the driving current I decreases, the opening response characteristics of a HSV deteriorate, the proportion of different power losses decrease in different levels, the energy utilization efficiency of a HSV increases. In the energy distribution of a HSV, core loss accounts for the highest proportion, followed by solid loss and copper loss. Useless energy is mostly due to core loss. It can be concluded that there is a possibility of achieving an optimal balance between the opening response time and energy distribution of a HSV when choosing hold current I properly. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本研究中,已经进行了高速电磁阀(HSV)的动态响应的模拟。 通过有限元方法(FEM)研究了保持电流I对HSV动态特性和功率损耗的影响。 仿真结果表明,随着驱动电流I降低,HSV劣化的开口响应特性,不同功率损失的比例降低了不同的水平,HSV的能量利用效率增加。 在HSV的能量分布中,核心损失占最高比例,其次是固体损失和铜损。 无用的能量主要是由于核心损失。 可以得出结论,当正确选择HSV时,可以在选择HSV的开口响应时间和能量分布之间实现最佳平衡。 (c)2017 Elsevier Ltd.保留所有权利。

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