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Original Articles

Automated second moment analysis of systems with probabilistic constitutive components

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Pages 67-75 | Published online: 20 Sep 2007

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Zhiping Qiu & Jun Wang. (2011) New direct probabilistic approach for static responses of structures with uncertainties. International Journal of Computer Mathematics 88:4, pages 714-730.
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Zheng Lv & Zhiping Qiu. (2016) A direct probabilistic approach to solve state equations for nonlinear systems under random excitation. Acta Mechanica Sinica 32:5, pages 941-958.
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Z.P. Qiu & D. Wu. (2010) A direct probabilistic method to solve state equations under random excitation. Probabilistic Engineering Mechanics 25:1, pages 1-8.
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S.H. Birkett. (2009) Directed bondgraphs and integral matroids. Simulation Modelling Practice and Theory 17:1, pages 50-68.
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E. Shakshuki, K. Ponnambalam & J. Vlach. (2005) Inverse-free second moment method for electrical systems with uncertain parameters. International Journal of Circuit Theory and Applications 33:2, pages 135-145.
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Elhadi Shakshuki & Kumaraswamy Ponnambalam. (2002) An automatic formulation of inverse free second moment method for algebraic systems. Reliability Engineering & System Safety 76:1, pages 81-89.
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S. Gupta & M. Chandrashekar. (1995) A unified approach to modelling photovoltaic powered systems. Solar Energy 55:4, pages 267-285.
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Peter Kafka. (1994) Important issues using PSA technology for design of new systems and plants. Reliability Engineering & System Safety 45:1-2, pages 205-213.
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K. Ponnambalam, D. Thangaraj & C. Thamayanthi. 1994. Stochastic and Statistical Methods in Hydrology and Environmental Engineering. Stochastic and Statistical Methods in Hydrology and Environmental Engineering 301 307 .
W.F. Curi. (1992) Automated first and second order moment equations for probabilistic analysis of large scale circuits and systems. Automated first and second order moment equations for probabilistic analysis of large scale circuits and systems.
Stephen M. Carr & Gordon J. Savage. (1991) A unified methodology for reliability assessment of systems with active redundancy. Reliability Engineering & System Safety 34:2, pages 181-219.
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