High Impulse Voltage And Current Measurement Techniques


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High Impulse Voltage and Current Measurement Techniques


High Impulse Voltage and Current Measurement Techniques

Author: Klaus Schon

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-07-03


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Equipment to be installed in electric power-transmission and distribution systems must pass acceptance tests with standardized high-voltage or high-current test impulses which simulate the stress on the insulation caused by external lightning discharges and switching operations in the grid. High impulse voltages and currents are also used in many other fields of science and engineering for various applications. Therefore, precise impulse-measurement techniques are necessary, either to prevent an over- or understressing of the insulation or to guarantee the effectiveness and quality of the application. The target audience primarily comprises engineers and technicians but the book may also be beneficial for graduate students of high-voltage engineering and electrical power supply systems.

High Impulse Voltage and Current Measurement Techniques


High Impulse Voltage and Current Measurement Techniques

Author: Klaus Schon

language: en

Publisher:

Release Date:


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High Voltage Measurement Techniques


High Voltage Measurement Techniques

Author: Klaus Schon

language: en

Publisher: Springer

Release Date: 2019-07-04


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This book conveys the theoretical and experimental basics of a well-founded measurement technique in the areas of high DC, AC and surge voltages as well as the corresponding high currents. Additional chapters explain the acquisition of partial discharges and the electrical measured variables. Equipment exposed to very high voltages and currents is used for the transmission and distribution of electrical energy. They are therefore tested for reliability before commissioning using standardized and future test and measurement procedures. Therefore, the book also covers procedures for calibrating measurement systems and determining measurement uncertainties, and the current state of measurement technology with electro-optical and magneto-optical sensors is discussed.