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471.
Aircraft robust multidisciplinary design optimization methodology based on fuzzy preference function
This paper presents a Fuzzy Preference Function-based Robust Multidisciplinary Design Optimization (FPF-RMDO) methodology. This method is an effective approach to multidisciplinary systems, which can be used to designer experiences during the design optimization process by fuzzy preference functions. In this study, two optimizations are done for Predator MQ-1 Unmanned Aerial Vehicle (UAV): (A) deterministic optimization and (B) robust optimization. In both problems, minimization of takeoff weight and drag is considered as objective functions, which have been optimized using Non-dominated Sorting Genetic Algorithm (NSGA). In the robust design optimization, cruise altitude and velocity are considered as uncertainties that are modeled by the Monte Carlo Simulation (MCS) method. Aerodynamics, stability and control, mass properties, performance, and center of gravity are used for multidisciplinary analysis. Robust design optimization results show 46% and 42% robustness improvement for takeoff weight and cruise drag relative to optimal design respectively. 相似文献
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473.
This paper proposes a fault-tolerant strategy for hypersonic reentry vehicles with mixed aerodynamic surfaces and reaction control systems (RCS) under external disturbances and subject to actuator faults. Aerodynamic surfaces are treated as the primary actuator in normal situations, and they are driven by a continuous quadratic programming (QP) allocator to generate torque com-manded by a nonlinear adaptive feedback control law. When aerodynamic surfaces encounter faults, they may not be able to provide sufficient torque as commanded, and RCS jets are activated to augment the aerodynamic surfaces to compensate for insufficient torque. Partial loss of effective-ness and stuck faults are considered in this paper, and observers are designed to detect and identify the faults. Based on the fault identification results, an RCS control allocator using integer linear programming (ILP) techniques is designed to determine the optimal combination of activated RCS jets. By treating the RCS control allocator as a quantization element, closed-loop stability with both continuous and quantized inputs is analyzed. Simulation results verify the effectiveness of the proposed method. 相似文献
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475.
混合回归模型及其在高耸结构风响应时域分析中的应用 总被引:1,自引:0,他引:1
针对多维AR模型同时求解回归系数矩阵所有元素的一些不足之处,本文提出了混合回归模型。通过对某一高耸结构的分析,表明混合回归模型对脉动风的模拟是有效的,并人数值模拟角度验证了,对于线性结构,外激的各态历经性可保证响应的各态历经性。 相似文献
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L. Prange A. Jäggi R. Dach H. Bock G. Beutler L. Mervart 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2010
The gravity field model AIUB-CHAMP02S, which is based on six years of CHAMP GPS data, is presented here. The gravity field parameters were derived using a two step procedure: In a first step a kinematic trajectory of a low Earth orbiting (LEO) satellite is computed using the GPS data from the on-board receiver. In this step the orbits and clock corrections of the GPS satellites as well as the Earth rotation parameters (ERPs) are introduced as known. In the second step this kinematic orbit is represented by a gravitational force model and orbit parameters. 相似文献
478.
对应用于聚束式合成孔径雷达 (SAR) 成像中的卷积反投影 (CBP) 算法进行了详细研究,提出了一种基于傅里叶变换的快速实现方法,使得CBP算法的计算量得到明显降低.在传统的CBP算法中,反投影过程中的重采样通过插值实现,因而所需的插值数量巨大,导致运算效率低下.研究了图像像素之间隐含的相对位置关系之后,本文采用一系列快速傅里叶变换 (FFT)来实现反投影过程中的重采样,避免了运算量巨大的插值过程,故提高了运算效率.仿真结果证明了新算法的可行性和有效性.相比于传统的CBP算法,新算法可以提高大约85%的运算效率.由于FFT适用于并行处理,新方法在实时处理SAR系统中有一定的应用价值. 相似文献
479.
机器人取代机床从事机械加工已成为自动化加工发展的一大趋向。本文在分析工业机器人应用现状的基础上,提出了机器人加工系统存在的一些问题,还对并联机床的发展作了展望。 相似文献
480.