Optimal Sensor Placement for Health Monitoring of Large Space Structures in Harsh Environment: A GA-EfI Approach

Author:

Xu Pengying,Wang Yan,Xu Xiaoxian,Teng Yucheng,Ge Dongming,Leng Guojun,Wu Yang,Wang Xuezi,Hu Xinlan,Wang Congsi

Publisher

Springer Nature Singapore

Reference9 articles.

1. Kammer, D.C.: Effect of model error on sensor placement for on-orbit modal identification of large space structures. J. Guidance Control Dyn. 15(2), 334–341 (1992)

2. Udwadia, F.E.: Methodology for optimum sensor locations for parameter identification in dynamic systems. J. Eng. Mech. 120(2), 368–390 (1994)

3. Long-jun, H.E., et al.: Optimal sensor placement for large space structures based on distance coefficient-effective independence method. J. Vib. Shock. 32(16), 13–18 (2013). (in Chinese)

4. Holland, J.H.: Genetic algorithms and adaptation. In: Selfridge, O.G., Rissland, E.L., Arbib, M.A. (eds.) Proceedings of the Adaptive Control of Ill-Defined Systems 1984. NATO Conference Series (II Systems Science) vol. 16, Springer, Boston (1984)

5. Yang, C., et al.: Optimal sensor placement for deployable antenna module health monitoring in SSPS using genetic algorithm. Acta Astronaut. 140, 213–224 (2017)

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