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Design of intelligent on-load tap changer controlled by permanent magnetic actuator

机译:永磁执行器控制智能负载分接开关的设计

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Traditional mechanical OLTC has some disadvantages while changing the taps, such as causing arc, switching slowly, having high malfunction rate. This paper proposed a kind of intelligent OLTC which equips with vacuum interrupters controlled by permanent magnetic actuators (PMA) as its switching parts. In this paper, the overall structure and electrical circuit scheme of the OLTC were designed on the basis of the simulation results under different circuit conditions. The type of vacuum interrupter and the transition resistance was theoretically analyzed and calculated. Furthermore, the hardware design and software development of intelligent OLTC controller were completed based on digital signal processor (DSP). An experimental prototype of intelligent OLTC has been developed, in which the controller takes power from the secondary side of transformer and the rectifier circuit has been used to recharge the capacitor array which acts as the power source of PMA. The capacitor-charging circuit, voltage and current measurement circuit, PMA-driving circuit and overvoltage absorption circuit were designed. The power supply module of the controller had been allocated systematically, so that the supply side of the controller and the main circuit of OLTC were electrical isolated. Finally, the switching experiments have been carried out for verifying the functions of the OLTC prototype. The results indicated that the intelligent OLTC prototype can switch off the circuit current precisely around the current zero point, and adjust the taps' positions of transformer automatically to complete the voltage regulating task. Moreover, it has the advantages of simple structure, satisfies the requests of miniaturization and intellectualization.
机译:传统的机械OLTC具有一些缺点,同时改变水龙头,例如导致弧形,切换缓慢,具有高故障率。本文提出了一种智能OLTC,其配备有由永磁致动器(PMA)控制的真空中断器作为其开关部件。本文在不同电路条件下的仿真结果的基础上设计了OLTC的整体结构和电路方案。理论上分析和计算真空中断器和过渡电阻的类型。此外,基于数字信号处理器(DSP)完成了智能OLTC控制器的硬件设计和软件开发。已经开发了一种智能OLTC的实验原型,其中控制器从变压器的次级侧采用电源,并且整流电路已经用于为电容器阵列充电,该电容器阵列充当PMA的电源。设计了电容器充电电路,电压和电流测量电路,PMA驱动电路和过电压吸收电路。控制器的电源模块系统地分配,使得控制器的供应侧和OLTC的主电路被隔离。最后,已经执行了切换实验,用于验证OLTC原型的功能。结果表明,智能OLTC原型可以在电流零点周围精确关闭电路电流,并自动调整变压器的水龙头位置以完成电压调节任务。而且,结构简单的优点,满足小型化和智能化的要求。

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