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131.
航天器壳体的压力加载实验对于航天器的安全飞行具有十分重要的意义。研究并建立了航天器壳体水压自动加载系统的数学模型,针对该系统的高度非线性以及高低压特性显著不同的特点,利用误差及误差导数构造了一种变比例因子的模糊PD控制器。采用一种新型的遗传算法对控制器系统参数进行寻优。针对模糊控制器控制规则表与量化比例因子的不同特点,分别采用两种不同的编码方法,进而采用两种不同的遗传操作算子与遗传操作概率。通过MATLAB与C 语言接口编程实现对系统的仿真设计。实验表明该方法取得了良好的压力加载效果。 相似文献
132.
非确定结构系统区间分析的直接优化法 总被引:16,自引:0,他引:16
陈怀海 《南京航空航天大学学报》1999,31(2):146-150
工程中的非确定性问题可以用区间分析、随机理论或模糊集理论进行求解。本文采用区间分析法来处理结构静力分析和设计中的不确定性问题。将结构系统中的不确定性参数用区间数来表示,用有限元法建立系统的控制方程。该控制方程是线性区间方程组。本文讨论了一些求解区间线性方程组的方法并提出了一种直接优化法。将方程组中的所有区间数都作为设计变量,区间量的变化区间作为相应的设计变量的边界约束,运用约束优化法求出方程组解的各元素的最大值和最小值。文中给出了两个算例,列出了本文算法与其他算法的结果比较 相似文献
133.
134.
New energy sources such as solar energy and hydrogen energy have been applied to the Unmanned Aerial Vehicle(UAV), which could be formed as the hybrid power sources due to the requirement of miniaturization, lightweight, and environmental protection issue for UAV. Hybrid electrical propulsion technology has been used in UAV and it further enforces this trend for the evolution to the Hybrid-Powered System(HPS). In order to realize long endurance flight mission and improve the energy efficiency of UAV, many researching works are focused on the Energy Management Strategy(EMS) of the HPS with digital simulation, ground demonstration platforms and a few flight tests for the UAV in recent years. energy management strategy, in which off-line or on-line control algorithms acted as the core part, could optimize dynamic electrical power distribution further and directly affect the efficiency and fuel economy of hybrid-powered system onboard.In order to give the guideline for this emerging technology for UAV, this paper presents a review of the topic highlighting energy optimal management strategies of UAV. The characteristics of typical new energy sources applied in UAV are summarized firstly, and then the classification and analysis of the architecture for hybrid power systems in UAV are presented. In the context of new energy sources and configuration of energy system, a comprehensive comparison and analysis for the state of art of EMS are presented, and the various levels of complexity and accuracy of EMS are considered in terms of real time, computational burden and optimization performance based on the optimal control and operational modes of UAV. Finally, the tendency and challenges of energy management strategy applied to the UAV have been forecasted. 相似文献
135.
计算流体力学(CFD)模拟实际工程问题所采用的网格规模可达千万量级,并行技术是减少计算时间的有效方法。耦合流场信息的网格自适应技术能有效动态优化计算网格,被NASA视为一项亟待发展的CFD关键技术。混合网格自适应系统包含网格分布优化、表面网格投影和空间网格匹配等关键技术。针对以上3项关键技术分别建立了高效的并行算法。首先,提出了先唯一后同一的两步法策略实现了网格单元分布优化过程的并行相容性;其次,基于局部曲面拟合思想,实现了曲面重构和新增物理网格点投影的完全并行;再次,提出了空间网格匹配技术的半并行算法,快速解决了网格单元交错问题。为了提高后续流场计算的并行效率,发展了基于并行重分区-网格数据迁移方法的动态负载平衡技术,并采用圆柱激波流场自适应模拟对动态负载平衡技术进行初步验证。最后,采用三角翼自适应加密测试了自适应系统的并行效率。结果表明,建立的混合网格自适应系统并行效率较高,且相比流场求解耗费总时间的比例低于1%。 相似文献
136.
Retrieval of vegetation equivalent water thickness from reflectance using genetic algorithm (GA)-partial least squares (PLS) regression 总被引:1,自引:0,他引:1
L. Li Y.-B. Cheng S. Ustin X.-T. Hu D. Riao 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(11):1755-1763
This study aimed to investigate the performance of genetic algorithms coupled with partial least squares (GA-PLS) modeling of spectral reflectance in retrieving equivalent water thickness (EWT) at leaf and canopy level. A genetic algorithm was used to identify a subset of spectral bands sensitive to the variation in EWT, and PLS was then applied to relate the identified bands to EWT values. GA-PLS was applied to leaf level reflectance available from LOPEX dataset, and canopy data includes reflectance simulated by a leaf radiative transfer model PROSPECT and a canopy radiative transfer model SAILH and acquired by airborne visible/infrared imaging spectrometer (AVIRIS). The results indicate that GA-PLS has the capability of retrieving EWT from leaf and canopy reflectance, and achieved good estimation accuracy, i.e. low root mean square errors (RMSE) and high squared correlation coefficients (R2). For the retrieval at leaf level, the estimation accuracy can be as good as RMSE = 0.0019 g/cm2 and R2 = 0.939 or better. For the retrieval at canopy level, the model accuracy is RMSE = 0.0061 g/cm2 and R2 = 0.966 or better when PROSPECT-SAILH simulated reflectance was used; when AVIRIS image spectra were used, the model accuracy is RMSE = 0.0094 g/cm2 and R2 = 0.8734 for the calibration, and RMSE = 0.0132 g/cm2 and R2 = 0.7756 for the validation. These results from GA-PLS modeling support the conclusion that GA-PLS has the potential to be applied to AVIRIS, Hyperion and HyMap imagery for retrieving EWT. The selected bands for the AVIRIS datasets differ from those for the LOPEX and PROSPECT-SAILH simulated datasets, and this inconsistence of the selected bands for different datasets indicates that the GA-PLS method has the advantage of tuning the optimum bands for PLS regression and accommodating the effects of confounding factors. 相似文献
137.
介绍了用递归低通滤波器方法来实现图象的方差自适应增强。提出了以局部统计值为基础的自适应增强的数学表示式,以及采用递归低通滤波器实现的方法,并对速归滤波器的设计作了较详细的分析和说明。在运算过程中,考虑各种因素,对输出的影响,适当选择合适的参数以获得令人满意的效果。在MODEL75图象系统上用上述算法实现图象增强,效果是明显的,使处理后的照片提高了局部对比度,细节更加清晰。 相似文献
138.
A new hybrid aerodynamic optimization framework based on differential evolution and invasive weed optimization 总被引:1,自引:2,他引:1
Since many aerodynamic optimization problems in the area of aeronautics contain highly nonlinear objectives and multiple local optima, it is still a challenge for most of the traditional optimization methods to find the global optima. In this paper, a new hybrid optimization framework based on Differential Evolution and Invasive Weed Optimization (IWO_DE/Ring) is developed, which combines global and local search to improve the performance, where a Multiple-Output Gaussian Process (MOGP) is used as the surrogate model. We first use several test functions to verify the performance of the IWO_DE/Ring method, and then apply the optimization framework to a supercritical airfoil design problem. The convergence and the robustness of the proposed framework are compared against some other optimization methods. The IWO_DE/Ring-based approach provides much quicker and steadier convergence than the traditional methods. The results show that the stability of the dynamic optimization process is an important indication of the confidence in the obtained optimum, and the proposed optimization framework based on IWO_DE/Ring is a reliable and promising alternative for complex aeronautical optimization problems. 相似文献
139.
倾转螺旋桨飞行器桨叶的气动设计研究 总被引:1,自引:2,他引:1
针对小型倾转螺旋桨独特的工作特性,在研究国外有关倾转旋翼桨叶设计现状的基础上,本文运用了遗传算法对桨叶的参数进行了寻优设计分析,以满足不同飞行状态的性能要求。设计结果表明,由本文提出的方法设计的螺旋桨与普通螺旋桨相比,在不损失巡航推进效率的同时,可显著增加悬停效率,提高飞机的悬停性能。 相似文献
140.