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Starting scheme for load commutated inverter-fed wound field synchronous machine using an auxiliary low-power voltage source inverter

机译:使用辅助低功率电压源逆变器的负载换向逆变器馈电式绕线同步机的启动方案

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摘要

Conventional thyristor-based load commutated inverter (LCI)-fed wound field synchronous machine operates only above a minimum speed that is necessary to develop enough back emf to ensure commutation. The drive is started and brought up to a speed of around 10-15% by a complex `dc link current pulsing' technique. During this process, the drive have problems such as pulsating torque, insufficient average starting torque, longer starting time, etc. In this regard a simple starting and low-speed operation scheme, by employing an auxiliary low-power voltage source inverter (VSI) between the LCI and the machine terminals, is presented in this study. The drive is started and brought up to a low speed of around 15% using the VSI alone with field oriented control. The complete control is then smoothly and dynamically transferred to the conventional LCI control. After the control transfer, the VSI is turned off and physically disconnected from the main circuit. The advantages of this scheme are smooth starting, complete control of torque and flux at starting and low speeds, less starting time, stable operation, etc. The voltage rating of the required VSI is very low of the order of 10-15%, whereas the current rating is dependent on the starting torque requirement of the load. The experimental results from a 15.8 hp LCI-fed wound field synchronous machine are given to demonstrate the scheme.
机译:常规的基于晶闸管的负载换向逆变器(LCI)供电的绕线励磁同步电机仅在最低速度以上运行,该速度是发展足够的反电动势以确保换向所必需的。驱动器启动,并通过复杂的“直流母线电流脉冲”技术将其提高到大约10-15%的速度。在此过程中,驱动器会出现诸如脉动扭矩,平均启动扭矩不足,启动时间较长等问题。在这方面,通过使用辅助低功率电压源逆变器(VSI),可以实现简单的启动和低速运行方案本研究介绍了LCI和机器端子之间的连接。仅使用带磁场定向控制的VSI即可启动驱动器并将其提升至约15%的低速。然后将完整的控制平稳,动态地转移到常规LCI控制中。控制权转移后,VSI关闭并与主电路物理断开连接。该方案的优点是启动平稳,在启动和低速时完全控制转矩和磁通,启动时间短,运行稳定等。所需VSI的额定电压非常低,约为10-15%,而额定电流取决于负载的启动转矩要求。给出了从15.8 hp LCI馈电式缠绕磁场同步机获得的实验结果,以证明该方案。

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