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Design and Development of a Series Switch for High Voltage in RF Heating

机译:射频加热高压串联开关的设计与开发

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Plasma is the fourth state of matter. To sustain plasma in its ionic form very high temperature is essential. RF heating systems are used to provide the required temperature. Arching phenomenon in these systems can cause enormous damage to the RF tube. Heavy current flows across the anode-cathode junction, which need to be suppressed in minimal time for its protection. Fast-switching circuit breakers are used to cut-off the load from the supply in cases of arching. The crowbar interrupts the connection between the high voltage power supply (HVPS) and the RF tube for a temporary period between which the series switch has to open. The crowbar shunts the current across the load but in the process leads to short circuiting the HVPS. Thus, to protect the load as well as the HVPS a series switch is necessary. This paper presents the design and development of high voltage Series Switch for the high power switching applications. Fiber optic based Optimum triggering scheme is designed and tested to restrict the time delay well within the stipulated limits. The design is well supported with the experimental results for the whole set-up along with the series switch at various voltage level before its approval for operation at 5.2 kV.
机译:等离子体是物质的第四状态。为了维持离子形式的等离子体,非常高的温度至关重要。射频加热系统用于提供所需的温度。这些系统中的拱起现象可能会对RF管造成巨大损害。大电流流过阳极-阴极结,为保护起见,必须在最短时间内将其抑制。在拱起的情况下,快速开关断路器用于切断电源负载。撬棍在一个必须断开串联开关的临时时间段内中断高压电源(HVPS)和RF管之间的连接。撬棍使负载两端的电流分流,但在此过程中会导致HVPS短路。因此,为了保护负载以及HVPS,需要一个串联开关。本文介绍了用于大功率开关应用的高压串联开关的设计和开发。设计并测试了基于光纤的最佳触发方案,以将时间延迟限制在规定的限制内。在批准以5.2 kV运行之前,整个设置的实验结果以及串联开关在各种电压水平下均得到了良好的设计支持。

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