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High voltage circuits for applicationof composite voltages to test gaps

Congpeng Huang, N.L. Allen, D.A. Greaves

Open publisher page 7 citations

Abstract

There is a need for high voltage laboratory testing using ‘composite voltages’, where impulse and either direct or alternating voltages are combined. The central problem is that of isolating the circuits prior to, and after, the impulse. This is achieved either with a capacitor or a spark gap, so that the voltages are respectively truly superimposed or, alternatively, comprise a peak composite voltage equal to the impulse voltage but preceded by the direct or alternating voltage. A variety of combined circuits is possible; some practical compromises are described and resulting efficiencies of the circuits compared where switching impulses are used.

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What this paper is about

There is a need for high voltage laboratory testing using ‘composite voltages’, where impulse and either direct or alternating voltages are combined. The central problem is that of isolating the circuits prior to, and after, the impulse. This is achieved either with a capacitor or a spark gap, so that the voltages are respectively truly superimposed or, alternatively, comprise a peak composite voltage equal to the impulse voltage but preceded by the direct or alternating voltage. A variety of combined circuits is possible; some practical compromises are described and resulting efficiencies of the circuits compared where switching impulses are used.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

There is a need for high voltage laboratory testing using ‘composite voltages’, where impulse and either direct or alternating voltages are combined. The central problem is that of isolating the circuits prior to, and after, the impulse. This is achieved either with a capacitor or a spark gap, so that the voltages are respectively truly superimposed or, alternatively, comprise a peak composite voltage equal to the impulse voltage but preceded by the direct or alternating voltage. A variety of combined circuits is possible; some practical compromises are described and resulting efficiencies of the circuits compared where switching impulses are used.

Key concepts: Voltage, Impulse (physics), Electronic circuit, Composite number, Capacitor, Voltage divider, Impulse generator, Electrical engineering

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