Title of article
Multidisciplinary Design and Optimization of Multistage Ground-launched Boost Phase Interceptor Using Hybrid Search Algorithm
Author/Authors
Zeeshan، نويسنده , , Qasim and Yunfeng، نويسنده , , Dong and Nisar، نويسنده , , Khurram and Kamran، نويسنده , , Ali and Rafique، نويسنده , , Amer، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
9
From page
170
To page
178
Abstract
This article proposes a multidisciplinary design and optimization (MDO) strategy for the conceptual design of a multistage ground-based interceptor (GBI) using hybrid optimization algorithm, which associates genetic algorithm (GA) as a global optimizer with sequential quadratic programming (SQP) as a local optimizer. The interceptor is comprised of a three-stage solid propulsion system for an exoatmospheric boost phase intercept (BPI). The interceptorʹs duty is to deliver a kinetic kill vehicle (KKV) to the optimal position in space to accomplish the mission of intercept. The modules for propulsion, aerodynamics, mass properties and flight dynamics are integrated to produce a high fidelity model of the entire vehicle. The propulsion module comprises of solid rocket motor (SRM) grain design, nozzle geometry design and performance prediction analysis. Internal ballistics and performance prediction parameters are calculated by using lumped parameter method. The design objective is to minimize the gross lift off mass (GLOM) of the interceptor under the mission constraints and performance objectives. The proposed design and optimization methodology provide designers with an efficient and powerful approach in computation during designing interceptor systems.
Keywords
solid rocket motor , boost phase , genetic algorithm , Grain design , Interceptor , optimization
Journal title
Chinese Journal of Aeronautics
Serial Year
2010
Journal title
Chinese Journal of Aeronautics
Record number
2264897
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