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Optimal Design Based on Dynamic Characteristics and Experimental Implementation of Submersible Electromagnetic Actuators

机译:基于动态特性的潜水电磁致动器优化设计及实验实现

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摘要

An optimization procedure based on the dynamic characteristics of a submersible electromagnetic actuator constrained in a specific volume has been developed. In order to achieve the minimum response time and low vibration when the actuator is opened, five radial dimensions are optimized when the main limiting quantity is the maximum allowed temperature. Three models, including a thermal model, an electromagnetic model, and a mechanical model are constructed, and optimization calculation is performed by using Matlab/Simulink software. According to the optimization results, an actuator is manufactured and dynamic experiments are performed. The results show substantial agreement between experimental response times and simulated response times. In order to investigate the vibration when the actuator is opened and closed, vibration experiments of the actuator are also performed. The results show that the measured vertical and horizontal accelerations are near the calculated acceleration of the plunger. Both of the experiments show that the optimization procedure is sufficiently accurate, and the optimal submersible electromagnetic actuator is sufficiently secure to be used in subsea BOP stacks.
机译:已经开发了一种基于受限于特定体积的潜水电磁致动器的动态特性的优化程序。为了在执行器打开时获得最短的响应时间和较低的振动,当主要限制量为最高允许温度时,优化了五个径向尺寸。构造了热模型,电磁模型和机械模型三个模型,并使用Matlab / Simulink软件进行了优化计算。根据优化结果,制造了执行器并进行了动态实验。结果表明,实验响应时间与模拟响应时间基本吻合。为了调查执行器打开和关闭时的振动,还执行了执行器的振动实验。结果表明,测得的垂直和水平加速度接近计算得出的柱塞加速度。这两个实验都表明优化程序足够准确,并且最佳的潜水电磁致动器足够安全,可用于海底防喷器组。

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