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61.
The equivalent linearization method (ELM) is modified to investigate the nonlinear flut- ter system of an airfoil with a cubic damping. After obtaining the linearization quantity of the cubic nonlinearity by the ELM, an equivalent system can be deduced and then investigated by linear flut- ter analysis methods. Different from the routine procedures of the ELM, the frequency rather than the amplitude of limit cycle oscillation (LCO) is chosen as an active increment to produce bifurca- tion charts. Numerical examples show that this modification makes the ELM much more efficient. Meanwhile, the LCOs obtained by the ELM are in good agreement with numerical solutions. The nonlinear damping can delay the occurrence of secondary bifurcation. On the other hand, it has marginal influence on bifurcation characteristics or LCOs. 相似文献
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63.
In this paper, harmonic balance method, exact formulation and numerical simulation method are adopted to study the effects of different friction stiffness on the stability of 1.5 degrees of freedom aeroelastic system. On this basis, the expressions of input energy and dissipated energy are deduced, and the energy method is used to reveal the mechanisms of the stable boundary and unstable boundary existing in the system and the effects of different friction stiffness on the stability of the system. Studies have shown that the stability region and the critical aerodynamic damping ratio of the system rise with the increase of the friction stiffness, while the friction stiffness has little effect on the stability boundary. In the analysis of the stability of system, the results of harmonic balance method, exact formulation and Newmark of numerical simulation method are in good agreement. Compared with exact formulation and numerical simulation method, the concept and conclusion of harmonic balance method are simple in the system stability analysis. 相似文献
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65.
《中国航空学报》2020,33(2):688-700
To improve the resolution and accuracy of Direct Position Determination (DPD), this paper investigates the problem of positioning multiple emitters directly with a single moving Rotating Linear Array (RLA). Firstly, the geometry of the RLA is formulated and analysed. According to its geometry, the intercepted noncoherent signals in multiple interception intervals are modeled. Correspondingly, the MUltiple SIgnal Classification (MUSIC) based noncoherent DPD approach is proposed. Secondly, the synchronous coherent pulse signals are individually considered and formulated. And the coherent DPD approach which aims for localizing this special type of signal is presented by stacking all array responses at different interception intervals. Besides, we also derive the constrained Cramér-Rao Lower Bound (CRLB) expression for both noncoherent and coherent DPD with RLA under the constraint that the altitudes of the emitters are known. At last, computer simulations are included to examine the performance of the proposed approach. The results demonstrate that the localization accuracy and resolution of DPD with single moving linear array can be significantly improved by the array rotation. In addition, coherent DPD with RLA further improves the resolution and increases the maximum emitter number that can be localized compared with the noncoherent DPD with RLA. 相似文献
66.
基于实验复模态参数的有限元模型修正 总被引:3,自引:0,他引:3
提出了一种利用非完备实验复模态参数,修正带有非比例阻尼矩阵结构有限元模型的迭代修正方法。首先,对处理困难的阻尼矩阵表达为质量与刚度矩阵的多项式组合,并给出了物理解释,被修正参数为该多项式的系数和结构的某些局部几何、材料参数,其修正结构物理意义明确,与结构的动态设计相适应,实例表明了本文修正方法的有效性。 相似文献
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针对在前馈/反馈混合控制中提高控制通道阻尼的问题,基于自适应滤波理论,提出适用于单输入单输出(SISO)和多输入多输出(MIMO)控制通道的时域自适应反馈主动阻尼设计方法。研究了自适应过程的理想期望信号的构造、SISO情况下闭环控制通道与反馈控制器同时进行自适应设计以及MIMO控制通道阻尼问题的简化与设计方法的拓展等问题;同时,基于某主动隔振试验平台的实测结果,对所有研究内容进行SIMULINK模型仿真。时域自适应反馈主动阻尼设计是高效的主动阻尼设计方法,并且为小阻尼动态系统的增阻设计提供了统一的方法框架。 相似文献
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针对带有惯性阻尼环节的典型伺服系统,提出一种能实现大范围快速定点运动的控制方案。控制方案首先利用时间最优控制律进行快速目标追踪,当系统速度下降到一定范围内时平滑切换成线性控制律。采用线性控制区内的闭环极点阻尼系统和自然频率作为设计参数,给出了全参数化的控制律。基于Lyapunov理论分析了控制系统的闭环稳定性。将该控制方案用于一个直流伺服电机的位置-速度环的定点位置控制,并进行了MATLAB数字仿真和基于TMS320F28335 DSC的试验研究。结果表明:所设计的控制系统可以对大范围的给定目标进行快速和准确的跟踪,且对扰动和系统参数差异具有较好的鲁棒性。 相似文献