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Research on a Linear Permanent Magnet Brushless DC Motor for Electromagnetic Catapult

机译:用于电磁弹射器的线性永磁无刷直流电动机的研究

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摘要

Linear permanent magnet (PM) brushless dc motor (LPMBDCM) is used for electromagnetic catapult, which may offer significant advantages, in terms of efficiency, high speed and accelerations of heavy payloads, capability of high forces, and so on. In this paper, an LPMBDCM, which is constructed of transverse flux stator and PM mover, is investigated. First, the launch specifications and technical features under the condition of pulse power input are presented. Then, the magnetic circuit parameters including the calculation of the mutual and leakage inductance are derived, and the rated work performances are analyzed. The rated input voltage, current, thrust, and power efficiency are 4000 V, 18041 A, 1.389 MN, and 0.97, respectively, which can meet the requirements of electromagnetic catapult. The availability and reliability are validated as the temperature rise per launch is lower than 1 °C, and the demagnetization of the PM would not happen with high pulse current. Finally, to validate the characteristic of the basic design, the system simulation model including the power supply and power conditioning is built using of Simulink, and the launch trajectory is simulated by the model, which shows the launch can achieve a speed of 99.47 m/s along the distance of 99.47 m within 1.51 s. A small-scale prototype machine is fabricated and the validity of the proposed method has been verified by the experimental results.
机译:线性永磁体(PM)无刷直流电动机(LPMBDCM)用于电磁弹射器,在效率,高速和重型负载的加速,强大的能力等方面,可以提供显着的优势。本文研究了由横向磁通定子和永磁动子构成的LPMBDCM。首先,介绍了脉冲功率输入条件下的发射规格和技术特点。然后,推导了包括互感和漏感计算在内的磁路参数,并对额定工作性能进行了分析。额定输入电压,电流,推力和功率效率分别为4000 V,18041 A,1.389 MN和0.97,可以满足电磁弹射器的要求。当每次发射的温度上升低于1°C时,可用性和可靠性得到了验证,并且在高脉冲电流下不会发生PM的退磁。最后,为了验证基本设计的特性,使用Simulink建立了包括电源和功率调节的系统仿真模型,并通过该模型对发射轨迹进行了仿真,表明发射速度可以达到99.47 m /沿99.47 m的距离在1.51 s之内。制造了小型原型机,实验结果验证了该方法的有效性。

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