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130kV 130 A high voltage switching mode power supply for neutral beam injectors—Control issues and algorithms

机译:用于中性束注入器的130kV 130 A高压开关模式电源-控制问题和算法

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The company JEMA has delivered to the Joint European Torus (JET facility in Culham) two high voltage switching mode power supplies (HVSMPS) each rated 130 kVdc and 130 A. One HVSMPS feeds the grids of two PINI loads. This paper describes the main control issues and the algorithms developed for the project. The most demanding requirements from the control point of view is an absolute accuracy of ±1300 V and the possibility of performing up to 255 re-applications of the high voltage during a 20 s pulse. Keeping the output voltage ripple to the specified tolerance has been a major achievement of the control system. Since the output stage is formed of several modules (120) connected in series, their stray capacitance to ground significantly influences the individual contribution of each single module to the global output voltage. Two complementary techniques have been used to balance the effects of the stray capacities. The fast re-applications requirement has a significant impact on the intermediate dc link. This section is composed of a capacity of 0.83 F, which feeds the 120 invertor modules. The dc link is fed by a 12 pulse SCR rectifier, whose matching transformers are connected to the 36 kV grid. Every re-application and every voltage shutdown supposes a quasi-instantaneous power step of 17 MW. Fast open loop algorithms have been implemented in order to keep the dc link voltage within acceptable margins. Moreover, the HVSMPS output characteristics have to be maintained during the rapid and important voltage fluctuations of the 36 kV mains (28-37 kV). The general control system is based on a Simatic S7 PLC, and a SCADA user interface. Up to 1000 signals are acquired. The control system has shown to be also a useful tool to allow for a rapid and accurate identification of faults and their origin.
机译:JEMA公司已经向联合欧洲Torus(位于Culham的JET设施)交付了两个高压开关模式电源(HVSMPS),每个额定电压为130 kVdc和130A。一个HVSMPS为两个PINI负载的电网供电。本文介绍了该项目的主要控制问题和开发的算法。从控制的角度来看,最苛刻的要求是绝对精度为±1300 V,并且在20 s脉冲期间最多可进行255次高压重新施加的可能性。将输出电压纹波保持在规定的公差范围内是控制系统的一项重大成就。由于输出级由串联连接的多个模块(120)形成,它们的接地杂散电容会显着影响每个模块对全局输出电压的贡献。已经使用两种补充技术来平衡杂散电容的影响。快速重新应用的要求对中间直流链路有重大影响。该部分的容量为0.83 F,可为120个逆变器模块供电。直流链路由一个12脉冲SCR整流器供电,该整流器的匹配变压器连接到36 kV电网。每次重新应用和每次电压关闭时,均假设瞬时功率阶跃为17 MW。为了将直流母线电压保持在可接受的范围内,已实施了快速开环算法。此外,在36 kV主电源(28-37 kV)的快速且重要的电压波动期间,必须保持HVSMPS输出特性。通用控制系统基于Simatic S7 PLC和SCADA用户界面。最多采集1000个信号。控制系统已被证明也是一种有用的工具,可以快速准确地识别故障及其来源。

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