By Peng Pan, Tao Wang, Masayoshi Nakashima
Development of on-line Hybrid trying out: idea and purposes to Structural Engineering presents accomplished remedies of a number of issues pertinent to substructure on-line hybrid exams. Emphasis has been put on explaining the 3 frameworks:
- the host-station framework,
- separated version framework and
- peer to see framework
These were constructed in the net surroundings and are fairly appropriate for disbursed hybrid trying out. so as to aid readers to appreciate the essence of on-line hybrid trying out and extra to accumulate their very own platforms, an engineering perform has been brought on the finish of this booklet with the resource code appended. improvement of on-line Hybrid trying out: conception and functions to Structural Engineering is essentially written for readers with a few history in structural dynamics, finite components, and machine technological know-how. fabric that has formerly simply seemed in magazine articles has been consolidated and simplified which supplies the reader with a standpoint of the state-of-the-art.
- Presents fundamentals and implementations of time integration algorithms for on-line hybrid exams, in addition to the functions for actual engineering projects
- Includes present growth at the improvement of substructure on-line hybrid exams as a way of investigating the seismic behaviour of large-scale structures
- Provides resource code for the instance tests
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Extra info for Development of online hybrid testing : theory and applications to structural engineering
30] Tsutsumi H, Ando K, Sato K. Substructure pseudo dynamic test with rotation control. In: Proceedings of 4th US national conference on earthquake engineering, vol. II; 1990. p. 525–34. 7 Conclusions References 39 41 42 43 43 45 46 47 48 49 50 50 52 53 INTRODUCTION In order to solve the equations of motion in an online hybrid test, time integration algorithms are used. Therefore, the study of these algorithms and their characteristics is of great importance. This chapter gives the basics to help the reader Development of Online Hybrid Testing.
18] Shing PB, Mahin SA. Experimental error propagation in pseudodynamic testing. Earthquake engineering research report UCB/EERC-83/12. Berkeley: University of California; 1983. p. 168.  Shing PSB, Mahin SA. Cumulative experimental errors in pseudodynamic tests. Earthq Eng Struct Dyn 1987;15(4):409–24.  Shing PB, Mahin SA. Experimental error effects in pseudodynamic testing. J Eng Mech 1990;116(4):805–21.  Nakashima M, Kato H. Experimental error growth behavior and error growth control in on-line computer test control method.
The following conclusions can be drawn for the accuracy: (1) The error of SSP is appreciably smaller than the error corresponding to the other algorithms, such as CDM, trapezoidal rule, and Wilson method. (2) The period may be elongated or reduced. The error decreases with the increase of p and q. 6 APPLICATIONS FOR AN ONLINE HYBRID TEST Although most of the time integration algorithms can be implemented for an online hybrid test, only a few of them have been employed because of their simplicity or inherent excellent numerical properties.
Development of online hybrid testing : theory and applications to structural engineering by Peng Pan, Tao Wang, Masayoshi Nakashima