Real Time Feedback Control System for an Electromagnetic Launcher

R. Karhi, J. Mankowski, D. Hemmert, S. Holt
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引用次数: 7

Abstract

The design and implementation of a real time feedback control system for a distributed energy, bench top, electromagnetic launcher is presented. The feedback control system provides optimum pulse shaping by real time control of solid state switches. Advantages of pulse shaping control include increased energy efficiency and control of armature exit velocity. Lab VIEW 8.0 software1 is used to program a National Instruments CompactRIO programmable automation controller (PAC). This provides real time processing by use of the reconfigurable I/O (RIO) FPGA technology. The program controls switch timing from analog feedback signals supplied by B-dot probes placed along the rail length. Through signal analysis, real time armature position is derived. The program uses this data to control pulse shape and width. A dedicated B-dot probe is placed at the beginning of each stage which is the desired triggering location. A flux ruler sensor along the bore length provides a secondary velocity calculation excluded from the control system. This sensor provides velocity measurements for every centimeter of bore travel. Collected data is used to characterize the system under test for different load conditions.
电磁发射装置实时反馈控制系统
介绍了一种分布式能量台式电磁发射装置的实时反馈控制系统的设计与实现。反馈控制系统通过实时控制固态开关提供最佳脉冲整形。脉冲整形控制的优点包括提高能量效率和控制电枢出口速度。Lab VIEW 8.0软件1用于对美国国家仪器公司(National Instruments) CompactRIO可编程自动化控制器(PAC)进行编程。这通过使用可重构I/O (RIO) FPGA技术提供了实时处理。该程序控制开关定时从模拟反馈信号提供的b点探头沿轨道长度放置。通过信号分析,导出了电枢的实时位置。该程序使用这些数据来控制脉冲的形状和宽度。在每个阶段的开始处放置一个专用的b点探头,这是所需的触发位置。沿着井径长度的通量尺传感器提供了不包括在控制系统之外的二次速度计算。这种传感器提供每厘米井眼行程的速度测量。收集的数据用于在不同负载条件下测试系统的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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