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2023 | OriginalPaper | Chapter

5. Negative Trends in the Development of Simulation, Testing, and Prediction in Engineering

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Abstract

This chapter reviews basic negative trends in development of simulation, testing, and prediction that includes discussion on the following:
  • Impaired testing in engineering and negative factors leading to the slow improvement of testing methods
  • Trends in using physical and virtual (computer) technology of simulation attempting to emulate field conditions and products
  • Erroneous use of the exponential law of distribution for accelerated testing
  • How this influence on inaccurate prediction
It also shows the following:
  • How current vibration and corrosion simulation methods differ from real-world vibration and corrosion realities
  • Trends in increasing usage of virtual simulation and decreasing physical simulation
  • Trends in publications in testing autonomous vehicles for last 30–40 years.
References and exercises are provided at the chapter’s end.

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Appendix
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Literature
1.
go back to reference Lev M. Klyatis (2012) Accelerated Reliability and Durability Testing Technology. Wiley. Lev M. Klyatis (2012) Accelerated Reliability and Durability Testing Technology. Wiley.
2.
go back to reference Lev M. Klyatis, Edward L. Anderson (2018) Reliability Prediction and Testing Textbook. Wiley. Lev M. Klyatis, Edward L. Anderson (2018) Reliability Prediction and Testing Textbook. Wiley.
3.
go back to reference Lev M. Klyatis, Eugene L. Klyatis (2006) Accelerated Quality and Reliability Solutions. Elsevier. Lev M. Klyatis, Eugene L. Klyatis (2006) Accelerated Quality and Reliability Solutions. Elsevier.
4.
go back to reference Lev Klyatis (2016) Successful Prediction of Product Performance. quality, reliability, durability, safety, maintainability, life-cycle cost, profit, and other components. SAE International. Lev Klyatis (2016) Successful Prediction of Product Performance. quality, reliability, durability, safety, maintainability, life-cycle cost, profit, and other components. SAE International.
5.
go back to reference Lindsay Brooke (2021) Making the Strategic Move Into AV Testing. Automotive Vehicle Engineering. July 2021. Lindsay Brooke (2021) Making the Strategic Move Into AV Testing. Automotive Vehicle Engineering. July 2021.
6.
go back to reference John Wilson (2018) Why So Many Product Recalls? TEST Engineering and Management. April/May 2018. John Wilson (2018) Why So Many Product Recalls? TEST Engineering and Management. April/May 2018.
7.
go back to reference Stuart Birch (2010) Mercedes’ CLS: is most tested car. Automotive Engineering. SAE International, October 2010. Stuart Birch (2010) Mercedes’ CLS: is most tested car. Automotive Engineering. SAE International, October 2010.
8.
go back to reference Mike Pendleton (2021) Beyond Battery Cycling: Testing Batteries in the Automotive Industry. SAE Webinar. Mike Pendleton (2021) Beyond Battery Cycling: Testing Batteries in the Automotive Industry. SAE Webinar.
9.
go back to reference Sarath Jayatilleka, Geoffrey Okogbaa (2014) Accelerated Life Testing (ALT). ASTR. 2014 Workshop on Accelerated Stress Testing and Reliability. Sarath Jayatilleka, Geoffrey Okogbaa (2014) Accelerated Life Testing (ALT). ASTR. 2014 Workshop on Accelerated Stress Testing and Reliability.
11.
go back to reference John P. King and William S. Jewett (2010) Robustness Development and Reliability Growth: Time, Money, and Risks. Premtice Hall. INFORMIT. April 2010. John P. King and William S. Jewett (2010) Robustness Development and Reliability Growth: Time, Money, and Risks. Premtice Hall. INFORMIT. April 2010.
12.
go back to reference William Q. Meeker and Luis A. Escobar (1993) A Review of Recent Research and Current Issues in Accelerated Testing. International Statistical Review / Revue Internationale de Statistique. Vol. 61, No. 1, Special Issue on Statistics in Industry (April 1993). William Q. Meeker and Luis A. Escobar (1993) A Review of Recent Research and Current Issues in Accelerated Testing. International Statistical Review / Revue Internationale de Statistique. Vol. 61, No. 1, Special Issue on Statistics in Industry (April 1993).
13.
go back to reference Symposium “Autonomous Vehicle Test & Development” (2018) (North America’s only conference dedicated to test & validation of autonomous vehicles & self-driving technology). October 23–25, 2018 in Novi, MI, USA. Symposium “Autonomous Vehicle Test & Development” (2018) (North America’s only conference dedicated to test & validation of autonomous vehicles & self-driving technology). October 23–25, 2018 in Novi, MI, USA.
14.
go back to reference Autonomous Vehicle Test and Development Symposium in conjunction with Autonomous Vehicle International magazine. 5 - 7 June 2018, Messe Stuttgart, Germany. Autonomous Vehicle Test and Development Symposium in conjunction with Autonomous Vehicle International magazine. 5 - 7 June 2018, Messe Stuttgart, Germany.
15.
go back to reference Automotive Components Fatigue and Durability Testing with Flexible Vibration Testing Table 10-02-01-0004. SAE International Journal of Vehicle Dynamics, Stability, and NVH-V127-10EJ. Automotive Components Fatigue and Durability Testing with Flexible Vibration Testing Table 10-02-01-0004. SAE International Journal of Vehicle Dynamics, Stability, and NVH-V127-10EJ.
16.
go back to reference Praveen Kumar, Prakaash J. Kumar P. (2018) Optimization of Proving Ground Durability Test Sequence Based on Relative Damage Spectrum. SAE Paper 2018-01-0101. Praveen Kumar, Prakaash J. Kumar P. (2018) Optimization of Proving Ground Durability Test Sequence Based on Relative Damage Spectrum. SAE Paper 2018-01-0101.
17.
18.
go back to reference Radar Reliability Testing (2019) The 14th Institute of the China Electronics Technology Group Corporation. Aerospace Testing International. June 2019. Page 83. Radar Reliability Testing (2019) The 14th Institute of the China Electronics Technology Group Corporation. Aerospace Testing International. June 2019. Page 83.
19.
go back to reference Automotive Testing Expo 2021, Novi, MI. October 26, 27, 28, 2021, Booth 6002. Automotive Testing Expo 2021, Novi, MI. October 26, 27, 28, 2021, Booth 6002.
20.
go back to reference James Truchand (2008) The Emerging Role of Physical Test in Product Development. SAE International. Automotive Engineering. James Truchand (2008) The Emerging Role of Physical Test in Product Development. SAE International. Automotive Engineering.
21.
go back to reference Back to Environmental Basic (2014) Aerospace Testing International. April 2014. Back to Environmental Basic (2014) Aerospace Testing International. April 2014.
22.
go back to reference Lalanne C. (2002) Fatigue Damage. Mechanical Vibration and Shock. Volume 4, ISBN 1903398066, April 2002. [22A]. MTS Systems Corporation. www.mts.com Lalanne C. (2002) Fatigue Damage. Mechanical Vibration and Shock. Volume 4, ISBN 1903398066, April 2002. [22A]. MTS Systems Corporation. www.​mts.​com
23.
go back to reference Lev M. Klyatis (2020) Trends in the Development Accelerated Testing for Automotive and Aerospace Engineering. Academic Press (ELSEVIER). Lev M. Klyatis (2020) Trends in the Development Accelerated Testing for Automotive and Aerospace Engineering. Academic Press (ELSEVIER).
24.
go back to reference Automotive Testing Technology International, November 2020. Automotive Testing Technology International, November 2020.
25.
go back to reference Danny Atsmon (2020) CEO, Cognata. Data Farming. Automotive Testing Technology International. November 2020., pp. 048–052. Danny Atsmon (2020) CEO, Cognata. Data Farming. Automotive Testing Technology International. November 2020., pp. 048–052.
26.
go back to reference Building Modular Test Centers (2020) Compared With a Traditional Block-Built Test Center building, modular test facility solutions save a lot of time and trouble. Automotive Testing Technology International. November 2020. pp. 091–093. Building Modular Test Centers (2020) Compared With a Traditional Block-Built Test Center building, modular test facility solutions save a lot of time and trouble. Automotive Testing Technology International. November 2020. pp. 091–093.
27.
go back to reference SAE Aerospace International. November 20, 2020. [27A]. Dave Baker (2020) How to Future Proof Your Test Systems. Aerospace Testing International. SHOWCASE. SAE Aerospace International. November 20, 2020. [27A]. Dave Baker (2020) How to Future Proof Your Test Systems. Aerospace Testing International. SHOWCASE.
28.
go back to reference Kevin W. McIntosh and Thomas Reilly (2020) Developing a National Satellite Testing Capability. Aerospace Testing International. ShowCase. November 2020. [28A]. Steffen Schmidt 2021 Simulation vs. Real World. Automotive Testing Technology International, September 2021. Kevin W. McIntosh and Thomas Reilly (2020) Developing a National Satellite Testing Capability. Aerospace Testing International. ShowCase. November 2020. [28A]. Steffen Schmidt 2021 Simulation vs. Real World. Automotive Testing Technology International, September 2021.
29.
go back to reference Lindsay Brooke (2021) Allison Builds a Testing Powerhouse. Truck and Off-Highway Engineering Technology Newsletter. 2021-02-09SAE International. 2021-02-09 Lindsay Brooke (2021) Allison Builds a Testing Powerhouse. Truck and Off-Highway Engineering Technology Newsletter. 2021-02-09SAE International. 2021-02-09
30.
go back to reference News 2021. Test World Unveils World’s First All-Electric ASTM Traction Truck Test World Unveils World’s First All-Electric ASTM Traction Truck MARCH 10TH 2021 PROVING GROUNDS,WINTER DRIVING, FINLAND News 2021. Test World Unveils World’s First All-Electric ASTM Traction Truck Test World Unveils World’s First All-Electric ASTM Traction Truck MARCH 10TH 2021 PROVING GROUNDS,WINTER DRIVING, FINLAND
31.
go back to reference New Weapons Testing System Produces Richer Data, Saves Time and Money (2021) Defense E-Newsletter, September 2021. newsletters@newsletters.techbriefsmedia.com New Weapons Testing System Produces Richer Data, Saves Time and Money (2021) Defense E-Newsletter, September 2021. newsletters@newsletters.​techbriefsmedia.​com
32.
go back to reference Weiss Technik. Safe Automotive Battery Testing with Environmental Test Chambers. Environmental Test Chambers Solutions EV/Battery. Weiss Technik. Safe Automotive Battery Testing with Environmental Test Chambers. Environmental Test Chambers Solutions EV/Battery.
33.
go back to reference DoD 3235, 1 H. Test and Evaluation of Systems RAM . DoD 3235, 1 H. Test and Evaluation of Systems RAM .
34.
go back to reference IEEE 1413-2002: A standard Methodology for Reliability Predictions. Guide for Selecting and Using Reliability Predictions based on IEEE 1413. 2019 [7]. IEEE 1413-2002: A standard Methodology for Reliability Predictions. Guide for Selecting and Using Reliability Predictions based on IEEE 1413. 2019 [7].
35.
go back to reference MIL-HDBK-217F. Military Handbook. Reliability Prediction of Electronic Equipment. MIL-HDBK-217F. Military Handbook. Reliability Prediction of Electronic Equipment.
36.
go back to reference Military Standard MIL-STD-781D Reliability Testing for Engineering Development, Qualification, and Production. Military Standard MIL-STD-781D Reliability Testing for Engineering Development, Qualification, and Production.
37.
go back to reference SAE International magazine AEROSPACE & DEFENSE TECHNOLOGY. May 2022. SAE International magazine AEROSPACE & DEFENSE TECHNOLOGY. May 2022.
38.
go back to reference Hottinger Bruel & Kjaer news@news.hbkworld.com , 5/19/2022, 2:12 PM. Electric Machines: Increase Reliability Hottinger Bruel & Kjaer news@news.​hbkworld.​com , 5/19/2022, 2:12 PM. Electric Machines: Increase Reliability
39.
go back to reference Aerospace Testing Symposium. Mark Allen Group. September 27–28. London. UK. Aerospace Testing Symposium. Mark Allen Group. September 27–28. London. UK.
40.
go back to reference Lindsay Brooke. Volkswagen sprints forward in the EV race by integrating battery test, production, and EV assembly in the US. Automotive Engineering. SAE. September 2022 Lindsay Brooke. Volkswagen sprints forward in the EV race by integrating battery test, production, and EV assembly in the US. Automotive Engineering. SAE. September 2022
Metadata
Title
Negative Trends in the Development of Simulation, Testing, and Prediction in Engineering
Author
Lev M. Klyatis
Copyright Year
2023
DOI
https://doi.org/10.1007/978-3-031-16655-6_5

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