Measurement Error of the Standard Unidirectional Impulse Waveforms Due to the Limited Bandwidth of the Measuring System

Analytical formulas derived here are capable of predicting the measurement error of the parameters of the standard unidirectional impulse waveforms due to the distortion induced by the limited bandwidth of the measuring system. The parameters subject to analysis are the rise time and the peak value....

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Veröffentlicht in:IEEE transactions on electromagnetic compatibility Jg. 55; H. 4; S. 692 - 698
1. Verfasser: Carobbi, Carlo F. M.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: New York, NY IEEE 01.08.2013
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:0018-9375, 1558-187X
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Abstract Analytical formulas derived here are capable of predicting the measurement error of the parameters of the standard unidirectional impulse waveforms due to the distortion induced by the limited bandwidth of the measuring system. The parameters subject to analysis are the rise time and the peak value. The standard waveforms considered are those defined in the IEC 61000-4-2 (electrostatic discharge), -4-4 (electrical fast transient/burst) and -4-5 (surge 1,2/50 μs and 8/20 μs) standards. The results obtained are of importance for the evaluation of the calibration uncertainty of the standard unidirectional impulse generators and associated coupling/decoupling networks as well as for the design of the corresponding measuring systems. Analytical predictions are confirmed by numerical simulations.
AbstractList Analytical formulas derived here are capable of predicting the measurement error of the parameters of the standard unidirectional impulse waveforms due to the distortion induced by the limited bandwidth of the measuring system. The parameters subject to analysis are the rise time and the peak value. The standard waveforms considered are those defined in the IEC 61000-4-2 (electrostatic discharge), -4-4 (electrical fast transient/burst) and -4-5 (surge 1,2/50 μs and 8/20 μs) standards. The results obtained are of importance for the evaluation of the calibration uncertainty of the standard unidirectional impulse generators and associated coupling/decoupling networks as well as for the design of the corresponding measuring systems. Analytical predictions are confirmed by numerical simulations.
Analytical formulas derived here are capable of predicting the measurement error of the parameters of the standard unidirectional impulse waveforms due to the distortion induced by the limited bandwidth of the measuring system. The parameters subject to analysis are the rise time and the peak value. The standard waveforms considered are those defined in the IEC 61000-4-2 (electrostatic discharge), -4-4 (electrical fast transient/burst) and -4-5 (surge 1,2/50 mu s and 8/20 mu s) standards. The results obtained are of importance for the evaluation of the calibration uncertainty of the standard unidirectional impulse generators and associated coupling/decoupling networks as well as for the design of the corresponding measuring systems. Analytical predictions are confirmed by numerical simulations.
Author Carobbi, Carlo F. M.
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  givenname: Carlo F. M.
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  fullname: Carobbi, Carlo F. M.
  email: carlo.carobbi@unifi.it
  organization: Dept. of Electron. & Telecommun., Univ. of Florence, Florence, Italy
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Cites_doi 10.1109/TIM.2013.2239017
10.1063/1.1697872
10.1109/15.57114
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Issue 4
Keywords Measurement errors
Rise time
impulse measurements
surge
Digital simulation
Electrostatic discharge
Pulse generators
Electromagnetic compatibility
Calibration
Linear momentum
Electrical fast transient/burst
measurement error
Decoupling
IEC standards
Measurement systems
Measurement uncertainty
Electrical transients
Wave forms
Pulse measurement
immunity tests
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Snippet Analytical formulas derived here are capable of predicting the measurement error of the parameters of the standard unidirectional impulse waveforms due to the...
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SubjectTerms Astronomy
Bandwidth
Characteristics and properties of external galaxies and extragalactic objects
Computers in experimental physics
Data analysis: algorithms and implementation; data management
Decoupling
Earth, ocean, space
Electrical fast transient/burst
electromagnetic compatibility
electrostatic discharge
Electrostatic discharges
Error analysis
Exact sciences and technology
Flares, bursts, and related phenomena
immunity tests
impulse measurements
Impulses
Instruments, apparatus, components and techniques common to several branches of physics and astronomy
Jets and bursts. Galactic winds and fountains
Mathematical analysis
Mathematical models
measurement error
Measurement errors
Measurement uncertainty
Physics
Solar physics
Solar system
Stellar systems. Galactic and extragalactic objects and systems. The universe
surge
Surges
Transient analysis
Unidentified sources and radiation outside the solar system
Waveforms
X-ray sources ; x-ray bursts
Title Measurement Error of the Standard Unidirectional Impulse Waveforms Due to the Limited Bandwidth of the Measuring System
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