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1.
基于自适应模糊系统的空天飞行器非线性预测控制   总被引:1,自引:0,他引:1  
方炜  姜长生 《航空学报》2008,29(4):988-994
 针对一类多输入多输出非线性不确定系统,提出了基于自适应模糊系统的非线性预测控制方法。控制器由基于模糊系统的非线性预测控制器和鲁棒自适应控制器两个部分组成。根据系统的跟踪误差在线调整模糊系统的权值,使得模糊系统一致逼近被控对象中的非线性函数,通过泰勒展开设计出基于模糊系统的非线性预测控制律,避免了预测控制在线优化带来的繁重的计算负担。鲁棒自适应控制器则用于减少不确定和模糊逼近误差对系统的影响。所设计的控制器保证了闭环系统的最终一致有界稳定。基于Lyapunov稳定原理,给出了理论证明和分析。最后利用提出的控制方案设计了空天飞行器高超声速飞行姿态的控制系统,仿真结果表明了控制方案的有效性。  相似文献   

2.
陀螺稳定平台视轴稳定系统自适应模糊PID控制   总被引:2,自引:0,他引:2  
姬伟  李奇 《航空学报》2007,28(1):191-195
 在运动载体上的光电跟踪系统中,需要采用建立在陀螺稳定平台上的视轴稳定控制。分析了平台结构和惯性稳定隔离原理。针对系统机械谐振、力矩耦合及电气参数波动等非线性不确定因素的影响,设计了复合自适应模糊PID控制器。引入自适应调整因子进行控制规则和参数的在线修正,采用复合控制克服模糊控制固有的盲区,实现无差调节。在光电跟踪转台上的实验结果显示该方法能够有效地隔离载体扰动,减小扰动造成的误差,保证视轴对目标的准确瞄准,具有快速的动态响应和较强的抗干扰性。  相似文献   

3.
史耀耀  阎龙  何晓东 《航空学报》2010,31(6):1294-1298
 非连续带材缠绕是布带缠绕的一种,广泛地应用于复合材料成型中,在大拉伸比缠绕时更能突显其优势。针对非连续带材的缠绕,在认真分析复合材料成型工艺过程和可能存在的技术难点的基础上,对影响缠绕制品质量的张力、布带拉伸比、布带自动续接及自动纠偏等因素的控制方法及相互作用机理进行了较为深入的研究,并设计出了切实可行的机械装置和控制方案。经应用验证,该方案既实现了非连续带材缠绕成型过程的自动化,又保证了缠绕制品的质量,解决了非连续带材成型过程的关键控制技术难题。  相似文献   

4.
为了提高快速伺服刀架的控制性能,减小跟踪误差,实现正弦网格表面精密加工,提出了基于RBF和BP神经网络的自适应PID控制策略.由仿真结果可以看出,采用基于神经网络的自适应控制算法,使跟踪误差的最大值降低为1.37μm,跟踪误差的绝对均值降低为0.52μm.这两项指标相对与传统PID控制分别降低了28%和40%.  相似文献   

5.
为满足工程中伺服系统所用控制算法的要求,基于控制系统输出误差及误差变化率的大小,在专家PID和模糊自适应PID之间进行模式转换,提出一种基于专家控制的模糊自适应PID控制算法。将该算法用于飞机燃油全模试验伺服控制系统中,并使用Matlab进行仿真。结果表明,该算法既具有模糊PID控制精度高、稳态性好、鲁棒性强的优点,又继承了专家PID控制器响应快速的特点,具有很好的控制效果。  相似文献   

6.
航空相机的故障检测是其日常维护的重要内容。本文针对航空相机侦察过程特点,提出一种基于灰色模型的模糊预测策略,即应用灰色系统理论建立对象的GM预测模型,对灰色模型预测值进行模糊推理,并通过对当前过程状态进行模糊判决,从而实现对灰色模型预测步长的自适应调整,改善预测效果。  相似文献   

7.
为了提高几何可调冲压发动机尾喷管控制性能,针对具有静差与动态不对称特性的连续可调喷管作动系统,采用模糊控制算法进行控制器设计,并利用自适应遗传算法进行控制器参数优化,最后将模糊控制系统与PID控制系统进行性能对比。结果表明,相较于常规模糊控制系统,优化后的模糊控制系统消除了稳态误差,减小了大小喉径在调节时间上的差异,鲁棒性较强。相较于优化后的PID控制系统,优化后的模糊控制系统在保证无稳态误差的基础上,具有更短的调节时间与更小的超调量,跟踪信号时具有更小的误差包络,优化后的模糊比PID控制系统性能提高2.6倍。总之,基于自适应遗传算法优化的连续可调喷管模糊控制系统比PID控制系统性能更高,能够满足高动态几何可调冲压发动机提出的响应快、调节精准、超调小的要求。  相似文献   

8.
采用数值模拟方法研究了自紧工艺对碳纤维缠绕复合气瓶的应力分布和疲劳性能的影响。基于ANSYS商用有限元分析软件,考虑气瓶封头部分碳纤维缠绕层的角度和厚度沿封头子午线的连续变化,建立了有限元模型。分析验证了54 MPa自紧压力对复合气瓶零压和35 MPa工作压力下内衬和复合材料缠绕层应力的影响,并利用Coffin-Manson公式预测了复合气瓶的疲劳寿命。结果表明,自紧后复合气瓶内衬在工作压力下的最大应力减小了29.1%。有限元计算的疲劳寿命结果与实验测定结果之间的误差<8%,验证了有限元模型和计算方法的正确性。  相似文献   

9.
圆筒纤维缠绕变张力神经网络动态控制   总被引:1,自引:0,他引:1  
康超  史耀耀  何晓东  张军  张晓扬 《航空学报》2015,36(4):1339-1347
 缠绕张力作为纤维缠绕成型中的关键影响因素,其波动直接影响缠绕精度和制品的性能。针对缠绕张力的动态变化,且保证制品等环向残余应力,提出神经网络动态控制缠绕变张力方法。考虑芯模变形影响,基于各向异性缠绕层弹性变形及各向同性内衬厚壁筒理论,给出外压作用下缠绕层的径向应力及环向应力;在弹性范围内采用应力叠加原理建立剩余张力与缠绕张力之间的解析算法。基于制品环向残余应力叠加特点,采用给定输出层权值的神经网络算法,通过误差反向传播及放大方法,对等环向残余应力制品纤维缠绕过程中的缠绕变张力进行动态更新。仿真与实验结果表明:该控制方法对纤维缠绕变张力起到动态优化作用,可以达到预期要求,且更符合实际缠绕过程。  相似文献   

10.
数控布带缠绕机关键技术   总被引:4,自引:1,他引:3  
史耀耀  唐虹  余强 《航空学报》2008,29(1):233-239
 多功能数控布带缠绕机是集机械、电子、气动、控制、软件和数控等技术一体化的多学科交叉综合应用的复杂设备。从提高参数控制精度及匹配精度的角度出发,详细地介绍了一种新型布带缠绕机的结构、组成及实现方式,并对机床本体、张力控制系统、温度控制系统、压力控制系统及数控系统的设计与开发中的关键技术做了较为深入的探讨。将该技术应用于多功能布带缠绕设备中,采用专用数控系统、先进机械装置及控制算法,既实现了缠绕成型过程的自动化,又保证了缠绕制品的质量,解决了复合材料零部件成型过程的关键制造技术难题。  相似文献   

11.
 Directing to the strong position coupling problem of electro-hydraulic load simulator (EHLS), this article presents an adap-tive nonlinear optimal compensation control strategy based on two estimated nonlinear parameters, viz. the flow gain coeffi-cient of servo valve and total factors of flow-pressure coefficient. Taking trace error of torque control system to zero as control object, this article designs the adaptive nonlinear optimal compensation control strategy, which regards torque control output of closed-loop controller converging to zero as the control target, to optimize torque tracking performance. Electro-hydraulic load simulator is a typical case of the torque system which is strongly coupled with a hydraulic positioning system. This article firstly builds and analyzes the mathematical models of hydraulic torque and positioning system, then designs an adaptive nonlinear optimal compensation controller, proves the validity of parameters estimation, and shows the comparison data among three control structures with various typical operating conditions, including proportion-integral-derivative (PID) controller only, the velocity synchronizing controller plus PID controller and the proposed adaptive nonlinear optimal compensation controller plus PID controller. Experimental results show that systems’ nonlinear parameters are estimated exactly using the proposed method, and the trace accuracy of the torque system is greatly enhanced by adaptive nonlinear optimal compensation control, and the torque servo system capability against sudden disturbance can be greatly improved.  相似文献   

12.
In the process of composite prepreg tape winding, the compaction force could influence the quality of winding products. According to the analysis and experiments, during the winding process of a rocket motor nozzle aft exit cone with a winding angle, there would be an error between the deposition speed of tape layers and the feeding speed of the compaction roller, which could influence the compaction force. Both a lack of compaction and overcompaction related to the feed-ing of the compaction roller could result in defects of winding nozzles. Thus, a flexible winding sys-tem has been developed for rocket motor nozzle winding. In the system, feeding of the compaction roller could be adjusted in real time to achieve an invariable compaction force. According to exper-iments, the force deformation model of the winding tape is a time-varying system. Thus, a forgetting factor recursive least square based parameter estimation proportional-integral-differential (PID) controller has been developed, which could estimate the time-varying parameter and control the compaction force by adjusting the feeding of the compaction roller during the winding process. According to the experimental results, a winding nozzle with fewer voids and a smooth surface could be wounded by the invariable compaction force in the flexible winding system.  相似文献   

13.
Laser heating technology is a type of potential and attractive space heat flux simulation technology, which is characterized by high heating rate, controlled spatial intensity distribution and rapid response. However, the controlled plant is nonlinear, time-varying and uncertainty when implementing the laser-based heat flux simulation. In this paper, a novel intelligent adaptive controller based on proportion–integration–differentiation(PID) type fuzzy logic is proposed to improve the performance of laser-based ground thermal test. The temperature range of thermal cycles is more than 200 K in many instances. In order to improve the adaptability of controller,output scaling factors are real time adjusted while the thermal test is underway. The initial values of scaling factors are optimized using a stochastic hybrid particle swarm optimization(H-PSO)algorithm. A validating system has been established in the laboratory. The performance of the proposed controller is evaluated through extensive experiments under different operating conditions(reference and load disturbance). The results show that the proposed adaptive controller performs remarkably better compared to the conventional PID(PID) controller and the conventional PID type fuzzy(F-PID) controller considering performance indicators of overshoot, settling time and steady state error for laser-based ground thermal test. It is a reliable tool for effective temperature control of laser-based ground thermal test.  相似文献   

14.
以MEMS静电悬浮陀螺仪敏感结构为研究对象,针对陀螺仪转子运动模型非线性和参数不确定的特点,采用自适应模糊PID控制策略设计了陀螺仪转子五自由度悬浮支承控制器.将MAT-LAB中Fuzzy模块和Simulink模块结合,对支承控制器进行仿真,结果表明,控制器的开、闭环频域特性以及刚度特性等均满足稳定性要求,且表现出良好的稳态和动态性能.  相似文献   

15.
为研究高精度的液压缸位置跟踪控制问题,设计了高速开关阀和换向阀组合控制液压缸的结构方案,并通过实验分析了高速开关阀的静态流量特性。建立了液压缸的连续可微摩擦模型,利用粒子群优化算法对其参数进行辨识。建立了系统的非线性数学模型,基于非连续参数映射和反步法设计了直接自适应鲁棒控制器,通过参数在线自适应调节来更新估计值和鲁棒反馈项支配参数不确定性,实验结果表明:在跟踪幅值为5mm,频率为0.4Hz的正弦信号时,最后一个周期的最大跟踪误差、平均跟踪误差及其标准差分别为0.638、0.25mm和0.405mm,与传统PID控制器相比,控制精度显著提升,旨在为实现高精度的数字阀控位置伺服技术提供有价值的参考。   相似文献   

16.
《中国航空学报》2020,33(2):740-748
Pressure fluctuations during the composite fiber winding process seriously affect the product's compactness strength, fatigue resistance, stress uniformity, and resin content. The accuracy of pressure control systems is affected by nonlinear disturbances, such as friction, parameter perturbation, and measurement noise. A robust control algorithm based on linear quadratic optimal control and sliding mode control (LQSMC) is proposed to overcome these problems. The method is based on the system state space expression and linear quadratic optimal control. The state space model of the system is improved by using a Kalman filter and control input for state estimation, and a new sliding surface equation is defined. The ameliorated control algorithm exhibits good performance and can effectively suppress sliding mode control (SMC) chattering. Simulation and experimental results show that LQSMC offers high control precision, much stronger anti-interference, and robustness, which can effectively improve the positioning and tracking accuracy of a pressure control system compared with linear quadratic optimal control (LQC). The winding pressure control precision is improved by 45% to 50%. The results show that the porosity of composite fiber tape winding products decreased thanks to our method.  相似文献   

17.
自适应模糊-滑模控制在重构飞行控制中的应用   总被引:3,自引:0,他引:3  
胡孟权  王建培 《航空学报》2002,23(6):538-541
 论述了综合运用非线性动态逆、自适应模糊系统和滑模控制的优点进行飞行控制律设计的方法。运用非线性动态逆理论对非线性系统进行近似线性化 ,用模糊自适应系统来抵消近似非线性逆带来的误差 ,最终的残差由滑模控制项补偿。根据李亚普诺夫稳定性理论推导了自适应系统权值的调整规律 ,从而保证了闭环系统的稳定性。将此方法应用于带推力矢量飞机重构飞行控制 ,对两类故障的仿真结果表明 :即使系统未检测到故障 ,在较大的舵面损伤情况下 ,飞控系统性能仍能得到很好的保持。  相似文献   

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