TY - GEN
T1 - Cyber-physical systems for real-time hybrid structural testing
T2 - 1st ACM/IEEE International Conference on Cyber-Physical Systems, ICCPS 2010
AU - Huang, Huang Ming
AU - Tidwell, Terry
AU - Gill, Christopher
AU - Lu, Chenyang
AU - Gao, Xiuyu
AU - Dyke, Shirley
PY - 2010
Y1 - 2010
N2 - Real-time hybrid testing of civil structures, in which computational models and physical components must be integrated with high fidelity at run-time, represents a grand challenge in the emerging area of cyber-physical systems. Actuator dynamics, complex interactions among computers and physical components, and computation and communication delays all must be managed carefully to achieve accurate tests. In this paper we present a case study of several fundamental interlocking challenges in developing and evaluating cyber-physical systems for real-time hybrid structural testing: (1) how physical and simulated components can be integrated flexibly and efficiently within a common reusable middleware architecture; (2) how predictable timing can be achieved atop commonly available hardware and software platforms; and (3) how physical vs. simulated versions of different components within a system can be interchanged with high fidelity between comparable configurations. Experimental results obtained through this case study give evidence of the feasibility and efficacy of these steps towards our overall goal: to develop a Cyber-physical Instrument for Real-time hybrid Structural Testing (CIRST).
AB - Real-time hybrid testing of civil structures, in which computational models and physical components must be integrated with high fidelity at run-time, represents a grand challenge in the emerging area of cyber-physical systems. Actuator dynamics, complex interactions among computers and physical components, and computation and communication delays all must be managed carefully to achieve accurate tests. In this paper we present a case study of several fundamental interlocking challenges in developing and evaluating cyber-physical systems for real-time hybrid structural testing: (1) how physical and simulated components can be integrated flexibly and efficiently within a common reusable middleware architecture; (2) how predictable timing can be achieved atop commonly available hardware and software platforms; and (3) how physical vs. simulated versions of different components within a system can be interchanged with high fidelity between comparable configurations. Experimental results obtained through this case study give evidence of the feasibility and efficacy of these steps towards our overall goal: to develop a Cyber-physical Instrument for Real-time hybrid Structural Testing (CIRST).
KW - cyber-physical systems
KW - middleware
KW - real-time hybrid structural testing
UR - https://www.scopus.com/pages/publications/77954586774
U2 - 10.1145/1795194.1795205
DO - 10.1145/1795194.1795205
M3 - Conference contribution
AN - SCOPUS:77954586774
SN - 9781450300667
T3 - Proceedings of the 1st ACM/IEEE International Conference on Cyber-Physical Systems, ICCPS '10
SP - 69
EP - 78
BT - Proceedings of the 1st ACM/IEEE International Conference on Cyber-Physical Systems, ICCPS '10
Y2 - 13 April 2010 through 15 April 2010
ER -