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1.
基于双层LPV模型的涡扇发动机切换控制   总被引:3,自引:2,他引:1       下载免费PDF全文
孙昊博  潘慕绚  黄金泉 《推进技术》2018,39(12):2828-2838
航空发动机飞行包线和参数变化范围大,要想保证整个参数区间存在一个单一的LPV控制器,往往需要牺牲一些区域的性能。针对上述问题,提出一种基于双层LPV模型的切换控制方法。首先通过发动机进口条件将飞行包线划分为几个局部重叠的子区域,分别建立各个子区域的双层LPV模型并求取对应的Lyapunov函数,进而根据所得的Lyapunov函数设计各子区域的控制器,并采用滞后切换策略和共同二次Lyapunov函数相结合的方式实现各子区域间的切换,解决控制器在切换时抖振问题的同时保证切换的稳定性,最后以某型涡扇发动机为对象进行仿真,结果表明所设计的控制器在全包线内有良好的控制效果。  相似文献   

2.
针对航空发动机动态特性随飞行状态和飞行条件的变化范围大,单一控制器很难保证全包线内控制效果的问题,在航空发动机LPV模型基础上提出1种平滑过渡的切换控制方法。该方法根据发动机进口条件对飞行包线区域进行划分,按照多项式平方和规划理论以及平滑过渡切换律求取各子区域的Lyapunov函数及LPV控制器。在某型涡扇发动机上进行仿真验证,结果表明:所设计的切换LPV控制器在不同高度、马赫数和转速条件下均具有良好的性能和控制精度,可以实现平滑切换。  相似文献   

3.
非线性气动弹性模型参考自适应控制   总被引:1,自引:0,他引:1  
李道春  向锦武 《航空学报》2008,29(2):280-284
 首先将含有前/后缘双控制面二元机翼的动态方程以状态空间形式描述,然后考虑俯仰方向的迟滞非线性模型存在参数不确定性的情况下,利用Lyapunov稳定性理论进行了结构化模型参考自适应控制律设计。仿真结果显示:所设计的控制律能够使开环不稳定的气动弹性系统快速地达到稳定状态。由于最大控制面偏转的存在,来流速度较高时闭环系统仍会发生颤振;根据控制面最大偏转的不同取值,文中给出了闭环临界颤振速度的变化曲线。  相似文献   

4.
针对能够在飞行过程中进行结构变形的变体无人机,考虑由变形引起的气动力与力矩,惯性力与力矩的非线性变化,建立其在质点系假设条件下的多体动力学模型。根据切换系统理论,将变体无人机视为一类线性切换系统,选择设计点,采用极点配置方法针对各设计点处的线性子系统设计控制器,再制定以变形量为决策变量的控制切换方案,构成切换控制系统。通过建立公共Lyapunov函数,推导了能够保证闭环切换系统在结构变形过程中一致有界的充分条件。以变体无人机Fire-Bee为例,验证了方案的有效性,仿真结果表明闭环系统无论在固定结构下还是变形过程中都具有良好的动态特性。  相似文献   

5.
基于切换多胞LPV的涡扇发动机全包线中间状态控制   总被引:3,自引:1,他引:2  
吴斌  黄金泉 《航空动力学报》2016,31(8):2040-2048
针对航空发动机全包线内参数变化范围较大,单一控制器很难保证全包线内的控制效果的问题,提出了基于切换多胞线性变参数(LPV)的发动机全包线中间状态控制方法.根据发动机的进口条件将飞行包线分为相互重叠的子区域,将多胞理论及状态重置切换方法引入控制器求解,给出了能够保证切换多胞LPV系统鲁棒稳定的线性矩阵不等式(LMI)条件;利用求解出的Lyapunov矩阵设计各子区域的LPV控制器,并结合几何位置调度策略实现子区域LPV控制;利用局部重叠的滞后切换策略和状态重置切换律实现全包线内各控制器的切换,并证明了该闭环切换系统的稳定性.最终以某型涡扇发动机为研究对象进行仿真验证,结果表明:采用该控制方法稳态误差能够控制在0.1%以内,超调量不大于0.5%.   相似文献   

6.
针对空间引力波探测航天器平台稳定姿态控制问题,提出一种改进的多变量模型参考自适应控制(MRAC)方案,应用于探测航天器平台无拖曳控制回路中,实现控制系统闭环鲁棒性的提升,抑制与系统输入相匹配的有界附加干扰和参数不确定性。考虑系统状态不易直接获得,MRAC方案的设计基于输出反馈和输出调节;为提高闭环系统鲁棒性,设计自适应修正项,该修正项的得出基于通过稳定性分析构造的线性矩阵不等式组(LMIs)的解。基于Lyapunov方法的稳定性分析验证了各信号的闭环稳定性,数值仿真验证了无拖曳自由度在面临非线性不确定性和附加干扰时的良好鲁棒性。  相似文献   

7.
多控制面飞机的全机颤振主动抑制设计   总被引:1,自引:0,他引:1  
杨超  宋晨  吴志刚  张瞿辉 《航空学报》2010,31(8):1501-1508
 以仿F/A-18A外形的全机模型为对象,研究多输入/多输出(MIMO)飞机颤振主动抑制(AFS)设计方法和特点。控制律采用线性二次型高斯(LQG)方法,结合平衡截断法降阶。首先,仅用机翼舵面对机翼部件和全机设计AFS控制律;然后,全动平尾参与AFS控制;最后,机身额外加装小翼,与机翼舵面联合控制,考察AFS效果。研究发现:单独机翼AFS效果显著,颤振速度提高28%;全机构型有机身模态参与颤振,仅用机翼舵面,低阶控制律颤振速度增量仅为4.6%;全动平尾参与控制可改善低频颤振,但存在低速的高频不稳定模态;机身小翼与机翼舵面联合控制,AFS控制效果可达14.9%。最终,筛选出机翼后缘内侧舵面与机身小翼两组控制面进行AFS设计,即可达到14.5%的颤振速度增量,是较为理想的AFS方案。  相似文献   

8.
高超声速飞行器大包线切换LPV控制方法   总被引:6,自引:0,他引:6  
张增辉  杨凌宇  申功璋 《航空学报》2012,33(9):1706-1716
高超声速飞行器飞行包线和参数变化范围大,气动参数存在较强不确定性,要求控制器能够适应大的飞行包线并具有较好的鲁棒性。针对上述问题,提出一种基于间隙度量的大包线滞后切换线性变参数(LPV)控制方法。依照时变参数将设计包线划分为若干子区域,将多胞理论和间隙度量引入控制器求解,提出了基于最优间隙度量的LPV控制方法,并利用此方法独立设计各子区域的LPV控制器,以改善控制器控制性能和鲁棒性能;利用基于重叠区域的滞后切换策略实现大包线内各子区域控制器的切换,以抑制切换面附近控制器的切换抖动,并证明了切换闭环系统的稳定性;最后以某型高超声速飞行器为对象设计了大包线滞后切换LPV控制器。仿真结果表明该方法可实现控制指令的精确跟踪,提高设计包线内LPV控制器的控制性能和鲁棒性能,并能保证切换系统的稳定性。  相似文献   

9.
为实现航空发动机在全包线的解耦控制, 在飞行包线内选择了若干点, 使用遗传算法对单神经元自适应解耦控制器的比例系数进行了离线优化。以优化得到的若干组参数为训练样本, 离线训练径向基函数(RBF)神经网络, 训练后的网络可映射高度、马赫数与比例系数之间的非线性关系, 飞行包线内任意点的解耦控制器比例系数即可由该网络得到。仿真表明:在设计点和非设计点, 系统均具有良好的动态特性和解耦特性。该方法结构简单、易于实现, 具有实用价值。   相似文献   

10.
许军  马晓平 《飞行力学》2012,(5):402-404,409
针对同时带有前缘和后缘襟翼的二维翼段,研究了考虑不确定性因素的多输入/多输出系统的颤振问题。利用线性分式变换形式,分析了模型中非定常气动力、非线性结构刚度和变结构阻尼等不确定性因素,建立了考虑不确定性的机翼闭环系统状态空间模型。利用鲁棒控制中的μ控制方法,分析了系统的鲁棒性。结果表明,同时带前后缘控制面的机翼可以有效拟制颤振的发生,提高颤振速度达34.96%。  相似文献   

11.
A model reference adaptive control (MRAC) with smooth switching scheme was proposed for piecewise linear systems, and the method was utilized in turbofan engine control to avoid the discontinuity of control input. In this scheme, each sub-region of the operating envelope had its own MRAC controller, and smooth indicator function based smooth switching scheme was introduced to switch multiple controllers smoothly at the boundary of adjacent sub-regions. The Lyapunov stability analysis indicated that the proposed smooth switching scheme can guarantee the convergence of the closed-loop system during the controllers switching. The tracking error system was converted into a switched system to analyze the global stability of the closed-loop system. The advantage of the method was that the chattering of system output and instability caused by asynchronous switching can be eliminated. The simulation illustrates the effectiveness of the proposed control scheme in comparison with the existing MRAC controller with gain scheduling for turbofan engine.   相似文献   

12.
发动机喘振裕度自适应控制   总被引:1,自引:0,他引:1  
孙健国  黄金泉 《航空动力学报》1993,8(3):279-282,310
本文研究飞行 /推进系统一体化控制中的发动机喘振裕度自适应控制。通过一定的控制作用 ,使发动机在所有飞行条件和工况下都保持一定的喘振裕度 ,从而充分发挥发动机的潜力。将发动机大偏差模型、进气道及飞机模型综合在一起 ,构成飞机 /推进系统一体化数学模型 ,以进行发动机自适应控制的仿真。计算机仿真表明 ,发动机自适应控制具有很好的性能效益 ,例如在飞行高度 H=10公里 ,飞机由 Ma=0 .65加速到 Ma=0 .90 ,在采用自适应喘振裕度控制后 ,双发动机推力提高 16 ,飞机加速时间缩短 2 3 ,大大提高了飞机性能。  相似文献   

13.
An adaptive robust attitude tracking control law based on switched nonlinear systems is presented for a variable structure near space vehicle (VSNSV) in the presence of uncertainties and disturbances. The adaptive fuzzy systems are employed for approximating unknown functions in the flight dynamic model and their parameters are updated online. To improve the flight robust performance, robust controllers with adaptive gains are designed to compensate for the approximation errors and thus they have less design conservation. Moreover, a systematic procedure is developed for the synthesis of adaptive fuzzy dynamic surface control (DSC) approach. According to the common Lyapunov function theory, it is proved that all signals of the closed-loop system are uniformly ultimately bounded by the continuous controller. The simulation results demonstrate the effectiveness and robustness of the proposed control scheme.  相似文献   

14.
《中国航空学报》2023,36(2):58-75
A four-cable mount system is proposed for full-model wind tunnel flutter tests, which may adjust the pitch and roll attitude of the aircraft scaled model and ensure that the model is not subjected to cable tension. The system provides sufficient support to simulate the free flight of the aircraft by applying appropriate spring stiffness and cable tensions. The proposed four-cable mount system is modeled based on Lagrange mechanics, and its dynamics equations consider aerodynamic effects. The singularity of the system and its bifurcation characteristics under flow conditions are analysed to determine the supercritical bifurcation phenomenon for different tension levels and distances from the front suspension point to the mass centre of the model. The mathematical expressions of the longitudinal flight stability of the cable mount system are derived by linearising the system dynamics equations using small perturbations. The influence of the cable tension, spring stiffness, suspension point position, and other factors on the flight stability of the aircraft are analysed. A feedforward control algorithm is proposed to minimize the total elastic potential energy of the system. The results show that the model is in the level flight state when the elastic potential energy of the four-cable mount system is minimized. A feedback control design method is proposed based on the Lyapunov stability theory to derive the closed-loop stability conditions. The system dynamics model that includes the aircraft rigid body model, flexible cables, pulleys, springs, aerodynamic model, and servo motor control is established using the flexible multibody dynamics method. A multibody dynamics solver and Simulink are used to simulate the attitude adjustment of the model in the wind tunnel and verify the supercritical bifurcation characteristics of the system and the effectiveness of the feedback and feedforward control.  相似文献   

15.
This paper concerns the flutter, post-flutter and adaptive control of a non-linear 2-D wing-flap system operating in supersonic/hypersonic flight speed regimes. An output feedback control law is implemented and its performance toward suppressing flutter and limit cycle oscillations (LCOs) as well as reducing the vibrational level in the subcritical flight speed range is demonstrated. This control law is applicable to minimum phase systems and we provide conditions for stability of the zero dynamics. The control objective is to design a control strategy to stabilize the pitch angle while adaptively compensating for uncertainties in all the aeroelastic model parameters. It is shown that all the states of the closed-loop system are asymptotically stable.  相似文献   

16.
Liu Zhi  Wang Yong 《中国航空学报》2014,27(5):1273-1287
Motivated by the autopilot of an unmanned aerial vehicle(UAV) with a wide flight envelope span experiencing large parametric variations in the presence of uncertainties, a fuzzy adaptive tracking controller(FATC) is proposed. The controller consists of a fuzzy baseline controller and an adaptive increment, and the main highlight is that the fuzzy baseline controller and adaptation laws are both based on the fuzzy multiple Lyapunov function approach, which helps to reduce the conservatism for the large envelope and guarantees satisfactory tracking performances with strong robustness simultaneously within the whole envelope. The constraint condition of the fuzzy baseline controller is provided in the form of linear matrix inequality(LMI), and it specifies the satisfactory tracking performances in the absence of uncertainties. The adaptive increment ensures the uniformly ultimately bounded(UUB) predication errors to recover satisfactory responses in the presence of uncertainties. Simulation results show that the proposed controller helps to achieve high-accuracy tracking of airspeed and altitude desirable commands with strong robustness to uncertainties throughout the entire flight envelope.  相似文献   

17.
BTT导弹的神经网络自适应反馈线性化控制   总被引:5,自引:1,他引:4  
提出基于反馈线性化理论的BTT导弹自动驾驶仪设计方法。并提出由俯仰过载命令产生攻角命令的方法。应用CMAC神经网络构成一种自适应反馈线性化方案,使具有不确定性的实际系统获得要求的跟踪性能。闭环系统的稳定性由李雅普诺夫稳定性理论得到保证。该方法适合于控制导弹作全空域飞行。  相似文献   

18.
The robust controller design problem for switched polytopic systems under asynchronous switching is addressed.These systems exist in many aviation applications, such as dynamical systems involving rapid variations.A switched polytopic system is established to describe the highly maneuverable technology vehicle within the full flight envelope and a robust dynamic output feedback control method is designed for the switched polytopic system.Combining the Lyapunov-like function method and the average dwell time method, a sufficient condition is derived for the switched polytopic system with asynchronous switching and data dropout to be globally,uniformly and asymptotically stable in terms of linear matrix inequality.The robust dynamic output feedback controller is then applied to the highly maneuverable technology vehicle to illustrate the effectiveness of the proposed approach.The simulation results show that the angle of attack tracking performance is acceptable over the time history and the control surface responses are all satisfying along the full flight trajectory.  相似文献   

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