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71.
72.
利用薄片金属梁作为非线性刚度元件,构建一种非线性能量阱。为了验证非线性能量阱对飞轮振动特性的抑制效果,搭建地面飞轮测试系统。分别采用力锤敲击和飞轮以恒定转速运行的方法施加不同载荷,对安装非线性能量阱前后测试系统各典型位置的振动响应进行对比研究。利用实测数据,采用傅里叶变换方法将动态响应信息分别在时间域和频率域内展开。研究表明:力锤敲击产生的冲击载荷和飞轮以恒定转速运行产生的稳态载荷均可以激发非线性能量阱定向能量传输;受非线性能量阱的影响,柔性支架设备安装面和飞轮安装面振动响应得到有效抑制。但是,由于非线性能量阱阻尼和吸振子质量较小,不同程度削弱了其振动抑制效果。 相似文献
73.
为了对G-16EP型电瓶进行维护和保养,根据电瓶厂家规定和适航规范,总结了该型电瓶的充电和容量测试(放电)方法,指出了影响电瓶寿命的主要因素,为该型号电瓶的维护提供了参考。 相似文献
74.
针对低空应急救援过程中救援物资需求的多样性与不确定性,提出基于反馈补偿K-means相似搜索的物资需求预测算法。通过比较非平稳数据处理方法,采用差分自回归平均移动模型( ARIMA)对历史灾情数据进行平滑处理;将预处理后的灾情数据运用基于反馈补偿的K-means方法进行聚类分析;再对比夹角余弦,杰卡德相似系数以及相关系数这3种方法,搜索出相似度最大历史灾情案例,并线性求解当前低空应急救援所需物资量。实验结果表明,在基于反馈补偿K-means相似搜索的物资需求预测过程中,运用相关系数搜索的误差是最小的,方法不仅提高了大数据处理能力,而且在一定程度上提高了预测精度。 相似文献
75.
Icing is one of the crucial factors that could pose great threat to flight safety,and thus research on stability and stability region of aircraft safety under icing conditions is significant for control and flight.Nonlinear dynamical equations and models of aerodynamic coefficients of an air craft are set up in this paper to study the stability and stability region of the aircraft under an icing condition.Firstly,the equilibrium points of the iced aircraft system are calculated and analyzed based on the theory of differential equation stability.Secondly,according to the correlation theory about equilibrium points and the stability region,this paper estimates the multidimensional stability region of the aircraft,based on which the stability regions before and after icing are compared.Finally,the results are confirmed by the time history analysis.The results can give a reference for stability analysis and envelope protection of the nonlinear system of an iced aircraft. 相似文献
76.
为提高三轴加速度计测量精度,分析其误差来源和产生机理,建立了误差模型;根据误差模型和重力场幅值不变特性,推导出非线性观测方程。引入两个未知的参数向量,通过数学变换把非线性观测方程变形为关于新未知参数的线性方程;然后采用批量最小二乘法求出新的未知参数,并根据误差模型参数和新未知参数之间的关系,利用逆解析运算求出对应的零点偏差、灵敏度误差和三轴不正交误差。实验结果表明,加速度计正负误差峰值间距可以减小100倍左右,精度可达10-3m/s2,并具有很好的可重复性。该方法算法效率较高,补偿效果显著。 相似文献
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Nonlinear dynamic modeling of a helicopter planetary gear train for carrier plate crack fault diagnosis 总被引:3,自引:3,他引:0
《中国航空学报》2016,(3):675-687
Planetary gear train plays a significant role in a helicopter operation and its health is of great importance for the flight safety of the helicopter. This paper investigates the effects of a planet carrier plate crack on the dynamic characteristics of a planetary gear train, and thus finds an effec-tive method to diagnose crack fault. A dynamic model is developed to analyze the torsional vibra-tion of a planetary gear train with a cracked planet carrier plate. The model takes into consideration nonlinear factors such as the time-varying meshing stiffness, gear backlash and viscous damping. Investigation of the deformation of the cracked carrier plate under static stress is performed in order to simulate the dynamic effects of the planet carrier crack on the angular displacement of car-rier posts. Validation shows good accuracy of the developed dynamic model in predicting dynamic characteristics of a planetary gear train. Fault features extracted from predictions of the model reveal the correspondence between vibration characteristic and the conditions (length and position) of a planet carrier crack clearly. 相似文献
80.
《中国航空学报》2016,(1):91-103
A theoretical nonlinear aeroelastic response analysis for a flexible high-aspect ratio wing excited by harmonic gust load is presented along with a companion wind tunnel test. A multidisci-plinary coupled numerical calculation is developed to simulate the flexible model wing undergoing gust load in the time domain via discrete nonlinear finite element structural dynamic analysis and nonplanar unsteady vortex lattice aerodynamic computation. A dynamic perturbation analysis about a nonlinear static equilibrium is also used to determine the small perturbation flutter bound-ary. A novel noncontact 3-D camera measurement analysis system is firstly used in the wind tunnel test to obtain the spatial large deformation and responses. The responses of the flexible wing under different static equilibrium states and frequency gust loads are discussed. The fair to good quanti-tative agreements between the theoretical and experimental results demonstrate that the presented analysis method is an acceptable way to predict the geometrically nonlinear gust response for flex-ible wings. 相似文献