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Tytuł artykułu

Metrological Properties of the Test Setup for Determination Shielding Effectiveness of the Industrial Cable Connectors

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Języki publikacji
EN
Abstrakty
EN
The paper presents results related to assessment of the repeatability and reproducibility of the measurement test setup for determination the relative value of the shielding effectiveness coefficient of the industrial connectors. The construction of the proposed test setup, the measurement method and the procedure for the analysis of measurement results were described. To determine the value of the repeatability and reproducibility coefficient, the two–way analysis of variance was used, which additionally allows for an assessment of the influence of individual sources of variance. The measurements and their analysis were conducted for several frequencies in the range up to 1 GHz. Additionally, the expanded measurement uncertainty, including the test setup and instruments uncertainty was estimated.
Twórcy
autor
  • Institute of Control and Computer Engineering, Opole University of Technology, ul. Prószkowska 76, 45-758 Opole, Poland
  • Institute of Control and Computer Engineering, Opole University of Technology, ul. Prószkowska 76, 45-758 Opole, Poland
autor
  • Institute of Control and Computer Engineering, Opole University of Technology, ul. Prószkowska 76, 45-758 Opole, Poland
Bibliografia
  • [1] P. R. Clayton, Introduction to Electromagnetic Compatibility. New York: John Wiley & Sons, Inc., 2006.
  • [2] K.-H. Gonschorek and R. Vick, Electromagnetic Compatibility for Device Design and System Integration. Berlin Heidelberg: SpringerVerlang, 2009.
  • [3] R. Sorrentino and G. Bianchi, Microwave and RF Engineering. Chichester: John Wiley & Sons, Ltd., 2010.
  • [4] A. Tsaliovich, Cable Shielding for Electromagnetic Compatibility. New York: Chapman & Hall, 1995.
  • [5] H. W. Ott, Noise Reduction Techniques in Electronic Systems. New York: John Wiley & Sons, Inc., 1988.
  • [6] M. Golio and J. Golio, RF and Microwave Passive and Active Technologies. Boca Raton: Taylor & Francis Group, 2008.
  • [7] L. Nowosielski, M. Wnuk, R. Przesmycki, K. Piwowarczyk, and M. Bugaj, “Coaxial cables shielding efficiency measuring methodology,” in Progress In Electromagnetics Research Symposium (PIERS 2012), 27–30 March, 2012, KL, Malaysia, 2012, pp. 72–76.
  • [8] D. M. Pozar, Microwave Engineering. Hoboken: John Wiley & Sons, Inc., 2012.
  • [9] W. J. Krzysztofik, R. Borowiec, and B. Bieda, “Some consideration on shielding effectiveness testing by means of the nested reverberation chambers,” Radioengineering, vol. 20, no. 4, pp. 766–774, 2011.
  • [10] Q. Zhang, L.-H. Shi, Y. H. Zhou, C. Gaoand, and Y. C. Guo, “Measurement of the shielding effectiveness of connector by improved triaxial method,” in Progress In Electromagnetics Research Symposium (PIERS 2011), 12–16 September, 2011, Suzhou, China, 2011, pp. 1334–1338.
  • [11] L. O. Hoeft and J. S. Hofstra, “Measured electromagnetic shielding performance of commonly used cables and connectors,” IEEE Transactions on Electromagnetic Compatibility, vol. 30, no. 3, pp. 260–275, 1988.
  • [12] W. Tarczyński and R. Kopka, “A system for testing data communications connectors with cable,” PL Patent Application P.409 190, 08 18, 2014.
  • [13] W. Tarczyński and R. Kopka, “A system for investigation the ICT connectors with cable,” PL Patent Application P.410 237, 11 24, 2014.
  • [14] T. Kleine-Ostmann, K. Munter, and T. Schrader, “A new shielding effectiveness measurement method based on a skin–effect transmission line coupler,” Advances in Radio Science, no. 5, pp. 37–42, 2007.
  • [15] W. T. Więckowski and M. J. Janukiewicz, “Methods for evaluating the shielding effectiveness of textiles,” FIBRES & TEXTILES in Eastern Europe, vol. 14, no. 5, pp. 18–22, 2006.
  • [16] J. W. Gooch and J. K. Daher, Electromagnetic Shielding and Corrosion Protection for Aerospace Vehicles. LLC: Springer Science+Business Media, 2007.
  • [17] “Electromechanical components for electronic equipment – Basic testing procedures and measuring methods – Part 23–3: Test 23c: Shielding effectiveness of connectors and accessories.” International Organization for Standardization, Geneva, CH, Standard, 1 2012.
  • [18] W. Tarczyński, “Pulse method measurements for determination of line fault location,” Archives of Electrical Engineering, vol. LV, no. 3–4, pp. 301–312, 2006.
  • [19] W. Tarczyński, “Mutual interaction of pulses in three–conductor coupled lines,” Archives of Electrical Engineering, vol. LVI, no. 1, pp. 79–87, 2007.
  • [20] “Accuracy (trueness and precision) of measurement methods and results. Part 1: General principles and definitions.” International Organization for Standardization, Geneva, CH, Standard, 1 1994.
  • [21] “Accuracy (trueness and precision) of measurement methods and results. Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method.” International Organization for Standardization, Geneva, CH, Standard, 1 1994.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-89ad0e24-beec-4274-bcc4-29c7adde9a2c
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