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A Novel Screw-Based Probe to Measure Pulse Forming Line Voltage in Tesla-Type Generators

机译:一种新型螺旋基探头,用于测量特斯拉型发生器中的脉冲形成线电压

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A novel screw-based probe is put forward to measure the pulse forming line (PFL) voltage in Tesla-type generators. This probe utilizes an existing screw as the key part of the conventional probe. Therefore, no extra hole is needed, which simplifies the design of the PFL. The voltage ratio of this probe is not a constant which varies within the pulsewidth with a deviation of +/- 5%. By analysis, it is found that this deviation is mainly due to the complicated electromagnetic environment on the outer magnetic core of the Tesla transformer where this probe is assembled. The electromagnetic environment can cause perturbation which adds on the main test waveform when the Tesla transformer is charging. Two solutions are proposed for this question. One is to consider the voltage ratio as a time-dependent variable, rather than a constant any more. The other is to redesign the screw-based probe and assemble it where the electromagnetic environment is weak. Both the methods can decrease the deviation of the voltage ratio to a level smaller than 1% and are applied in practical measurements.
机译:提出了一种新型螺旋基探头,以测量特斯拉型发生器中的脉冲形成线(PFL)电压。该探头利用现有螺钉作为传统探头的关键部分。因此,不需要额外的孔,这简化了PFL的设计。该探针的电压比不是脉冲宽度内变化的常数,其偏差为+/- 5%。通过分析,发现该偏差主要是由于TESLA变压器的外磁芯上的复杂电磁环境,其中该探针组装。当Tesla变压器充电时,电磁环境会导致扰动增加主测试波形。提出了两个解决方案的这个问题。一个是将电压比视为时间依赖的变量,而不是多于恒定。另一种是重新设计螺旋基探头并将其组装在电磁环境较弱的位置。这两种方法都可以将电压比的偏差降低到小于1%的电平,并且在实际测量中应用。

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