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首页> 外文期刊>Electric Power Applications, IET >Eliminating starting hesitation for reliable operation of switched reluctance motor without machine parameters for light electric vehicle applications
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Eliminating starting hesitation for reliable operation of switched reluctance motor without machine parameters for light electric vehicle applications

机译:消除了启动犹豫,使开关磁阻电机可靠运行而无需机器参数,适用于轻型电动汽车应用

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摘要

In this study, an initial rotor position estimation at standstill condition is presented for reliable operation of switched reluctance motor (SRM) without initialising machine parameters for light electric vehicle (LEV) applications. The prime objective of this method is to startup an SRM without using the mechanical position sensor, and eliminate the starting hesitation and starting jerk issues from standstill condition. In the proposed method, the initial rotor position at standstill is determined by injecting a single pulse dc voltage simultaneously into all stator phase windings for a very short period (microsecond). The obtained current envelope data is then used to calculate the initial rotor position with the quadratic polynomial interpolation technique without any prior knowledge of other motor parameters. The experimental results for a 3.5 kW, 6/4 SRM are provided to substantiate the overall good performance. The developed system can be considered as a strong candidate for high precision LEV applications.
机译:在这项研究中,提出了静止状态下的初始转子位置估计,以确保开关磁阻电机(SRM)的可靠运行而无需初始化轻型电动汽车(LEV)应用的机器参数。该方法的主要目的是在不使用机械位置传感器的情况下启动SRM,并消除静止状态下的启动迟滞和启动急动问题。在提出的方法中,静止状态下的初始转子位置是通过在非常短的时间内(微秒)同时向所有定子相绕组中注入单个脉冲直流电压来确定的。然后将获得的电流包络数据用于二次多项式插值技术来计算初始转子位置,而无需事先了解其他电动机参数。提供了3.5 kW,6/4 SRM的实验结果,以证实整体性能良好。可以将开发的系统视为高精度LEV应用程序的强大候选者。

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