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无人机滑橇着陆装置的动力分析 总被引:1,自引:0,他引:1
齐俊伟 《南京航空航天大学学报》1999,31(6):726-731
无人机滑橇着陆装置由滑橇、运动机构及油气减震器构成。Jindivik 无人机的滑橇着陆装置结构紧凑、简洁,在同类系统中具有一定的代表性及其独特之处。文中对该装置运动机构进行运动及动力学分析。通过构造该装置的动力学模型,对其着陆缓冲过程进行数学模拟,得出该装置运动关系及着陆缓冲过程的动态特性。分析计算的方法及结果,可供设计同类装置或方案选型时参考 相似文献
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本文用“状态方程法”辅以Longe-Kutla数字积分法求解微分方程组,成功地进行了液压减震筒这类非线性不连续系统的时域分析。 相似文献
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高速开关阀在起落架半主动控制中的应用研究(英文) 总被引:3,自引:0,他引:3
To select or develop an appropriate actuator is one of the key and difficult issues in the study of semi-active controlled landing gear. Performance of the actuator may directly affect the effectiveness of semi-active control. In this article, parallel high-speed solenoid valves are chosen to be the actuators for the semi-active controlled landing gear and being studied. A nonlinear high-speed solenoid valve model is developed with the consideration of magnetic saturation characteristics and verified by test. According to the design rule of keeping the peak load as small as possible while absorbing the specified shock energy, a fuzzy PD control rule is designed. By the rule controller parameters can be self-regulated. The simulation results indicate that the semi-active control based on high-speed solenoid valve can effectively improve the control performance and reduce impact load during landing. 相似文献