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In this paper,a novel global optimization method—specular reflection algorithm(SRA)is proposed,which simulates the unique optical property of mirror—reflection function.Combining the computing features of the SRA with traditional mathematical theories,the global convergence ability of the SRA is verified.The reasonable value of the SRA’s control parameter is analysed,so that the best control parameter which is suitable for current optimization problems can be acquired.Four numerical examples are researched using the SRA and other 4 classical intelligent optimization methods,such as particle swarm optimization,Kalman swarm optimization,etc.Simulation results of numerical examples demonstrated the effectiveness and superiority of the SRA,especially its suitability for solving high dimensional,multi-peak complex functions.Finally the structure of general bridge crane is investigated and designed by SRA for robust reliability optimization design.The results illustrate that the SRA is reasonable,accurate and can be treated as an effective analysis technique in reliability-based robust optimization design.It can be predicted that the SRA can be widely used in engineering for creating more value.