The multiobjective trajectory optimization for hypersonic glide vehicle based on normal boundary intersection method

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Abstract

To solve the multiobjective optimization problem on hypersonic glider vehicle trajectory design subjected to complex constraints, this paper proposes a multiobjective trajectory optimization method that combines the boundary intersection method and pseudospectral method. The multiobjective trajectory optimization problem (MTOP) is established based on the analysis of the feature of hypersonic glider vehicle trajectory. The MTOP is translated into a set of general optimization subproblems by using the boundary intersection method and pseudospectral method. The subproblems are solved by nonlinear programming algorithm. In this method, the solution that has been solved is employed as the initial guess for the next subproblem so that the time consumption of the entire multiobjective trajectory optimization problem shortens. The maximal range and minimal peak heat problem is solved by the proposed method. The numerical results demonstrate that the proposed method can obtain the Pareto front of the optimal trajectory, which can provide the reference for the trajectory design of hypersonic glider vehicle.

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APA

Li, Z., Yang, T., & Feng, Z. (2016). The multiobjective trajectory optimization for hypersonic glide vehicle based on normal boundary intersection method. Mathematical Problems in Engineering, 2016. https://doi.org/10.1155/2016/9407238

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