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Results from a 750 kJ Computer Controlled Sequentially-Fired Pulse Forming Network

机译:750 kJ计算机控制的序贯触发脉冲形成网络的结果

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The design of a 750 kJ sequentially-fired pulse forming network (SFPFN) is described and recent experimental results in the case of a linear load are presented and compared with simulations. The principal advantages of the sequentially fired network over its passive analogue are its utility in both linear and non-linear load applications. Operation of the SFPFN consists of charging multiple capacitor banks to various levels and sequentially firing these banks into the load at appropriate times. The load characteristics and desired pulse attributes determine the module charge voltage and sequential firing schedule. The SFPFN uses a computer controlled field programmable gate array (FPGA) to trigger the individual module firing intervals. The use of a computer controlled firing circuit provides an opportunity to incorporate realtime load monitoring and feedback to select optimal firing times and durations based on dynamic load conditions. Real-time monitoring also allows for firing sequence abortion in the event of a fault or other potentially harmful event. The charging controller features a computer monitoring and control system to allow a single power supply to charge multiple capacitor modules by an array of switching relays, even though each module may be charged to a different voltage. In linear load testing, the SFPFN provided a relatively constant current pulse to a resistive load.
机译:描述了750kJ序贯触发脉冲形成网络(SFPFN)的设计,并呈现了线性负载的近期实验结果,并与模拟进行了比较。依次触发网络在其被动模拟上的主要优点是其在线性和非线性负载应用中的实用性。 SFPFN的操作包括将多个电容器组充电到各种级别,并在适当的时间顺序地将这些存储体触发到负载中。负载特性和期望的脉冲属性确定模块充电电压和顺序射击时间表。 SFPFN使用计算机控制的字段可编程门阵列(FPGA)来触发各个模块触发间隔。使用计算机控制的触发电路提供了合并实时负载监控和反馈的机会,以基于动态负载条件选择最佳点火时间和持续时间。实时监控还允许在故障或其他潜在有害事件发生时射击序列流产。充电控制器具有计算机监控和控制系统,以允许单个电源通过切换继电器阵列充电,即使每个模块都可以充电到不同的电压。在线性负载测试中,SFPFN为电阻负载提供了相对恒定的电流脉冲。

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