Aiming at solving the problems of response lag and lack of precision and stability in constant grinding force control of industrial robot belts,a constant force control strategy combining fuzzy control and proportion ...Aiming at solving the problems of response lag and lack of precision and stability in constant grinding force control of industrial robot belts,a constant force control strategy combining fuzzy control and proportion integration differentiation(PID)was proposed by analyzing the signal transmission process and the dynamic characteristics of the grinding mechanism.The simulation results showed that compared with the classical PID control strategy,the system adjustment time was shortened by 98.7%,the overshoot was reduced by 5.1%,and the control error was 0.2%-0.5%when the system was stabilized.The optimized fuzzy control system had fast adjustment speeds,precise force control and stability.The experimental analysis of the surface morphology of the machined blade was carried out by the industrial robot abrasive grinding mechanism,and the correctness of the theoretical analysis and the effectiveness of the control strategy were verified.展开更多
The technology of attitude control for quadrotor unmanned aerial vehicles(UAVs) is one of the most important UAVs' research areas.In order to achieve a satisfactory operation in quadrotor UAVs having proportional ...The technology of attitude control for quadrotor unmanned aerial vehicles(UAVs) is one of the most important UAVs' research areas.In order to achieve a satisfactory operation in quadrotor UAVs having proportional integration differential(PID) controllers,it is necessary to appropriately adjust the controller coefficients which are dependent on dynamic parameters of the quadrotor UAV and any changes in parameters and conditions could affect desired performance of the controller.In this paper,combining with PID control and fuzzy logic control,a kind of fuzzy self-adaptive PID control algorithm for attitude stabilization of the quadrotor UAV was put forward.Firstly,the nonlinear model of six degrees of freedom(6-DOF) for quadrotor UAV is established.Secondly,for obtaining the attitude of quadrotor,attitude data fusion using complementary filtering is applied to improving the measurement accuracy and dynamic performance.Finally,the attitude stabilization control simulation model of the quadrotor UAV is build,and the self-adaptive fuzzy parameter tuning rules for PID attitude controller are given,so as to realize the online self-tuning of the controller parameters.Simulation results show that comparing with the conventional PID controller,this attitude control algorithm of fuzzy self-adaptive PID has a better dynamic response performance.展开更多
A closed-chain robot has several advantages over an open-chain robot, such as high mechanical rigidity, high payload, high precision. Accurate trajectory control of a robot is essential in practical-use. This paper pr...A closed-chain robot has several advantages over an open-chain robot, such as high mechanical rigidity, high payload, high precision. Accurate trajectory control of a robot is essential in practical-use. This paper presents an adaptive proportional integral differential (PID) control algorithm based on radial basis function (RBF) neural network for trajectory tracking of a two-degree-of-freedom (2-DOF) closed-chain robot. In this scheme, an RBF neural network is used to approximate the unknown nonlinear dynamics of the robot, at the same time, the PID parameters can be adjusted online and the high precision can be obtained. Simulation results show that the control algorithm accurately tracks a 2-DOF closed-chain robot trajectories. The results also indicate that the system robustness and tracking performance are superior to the classic PID method.展开更多
针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定...针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定位精度(偏移半径)和推进器利用效率的影响。结果表明,随着K p的增大,推进器利用效率增加,甚至出现过盈的现象,偏移半径则是先减小后增大。采用控制变量法对K_(d)取值进行验证,表明随着K_(d)的增大,推进器利用效率增加,偏移半径反而有增大的趋势。研究为DP数值模拟中PID参数的选择提供依据。展开更多
The hose pulse testing bench generally uses electro-hydraulic servo system. It occupies little space, tracks signals fast and has simple structure, and therefore it is widely used in industrial control field. However,...The hose pulse testing bench generally uses electro-hydraulic servo system. It occupies little space, tracks signals fast and has simple structure, and therefore it is widely used in industrial control field. However, there are lots of problems such as little accuracy and instability caused by slow response of hydraulic and various interference factors. Simple proportional integra- tion derivatiation (PID) control method of traditional pulse bench is simple in principle, but it is difficult in parameter adjust- ment. According to the special requirements of the control system, a PID method based on fuzzy control is proposed in the pa- per. This method not only retains the advantages of the conventional control system, but also ameliorates the drawbacks of parameter uncertainty, instability and lag. It has been testified that the method is practicable and can improve the precision and adaptation.展开更多
Asymmetric stereoscopic video coding can take advantage of binocular suppression in human vision by representing one of the two views in lower quality.This paper proposes a bit allocation strategy for asymmetric stere...Asymmetric stereoscopic video coding can take advantage of binocular suppression in human vision by representing one of the two views in lower quality.This paper proposes a bit allocation strategy for asymmetric stereoscopic video coding.In order to improve the accuracy of bit allocation and rate control in the left view,a proportionalintegral-derivative controller is adopted.Meanwhile,to control the quality fluctuation between consecutive frames of the left view,a quality controller is adopted.Besides,a fuzzy controller is proposed to control the variation in quality between the left and right views by comparing the PSNR disparity of two views with a fixed threshold,which is used to quantize the binocular psycho-visual redundancy and adjust the quantization parameter (QP) of the right view correspondingly.The proposed algorithm has been implemented in H.264/AVC video codec,and the experimental results show its effectiveness in rate control while keeping a good quality for the left view,and fewer bits are allocated for the right view so that the overall bit rate is saved by 7.2% at most without the loss of subjective visual quality for stereoscopic video.展开更多
为提高井下作业质量,实现对钻机在工作中转速的精确、高效控制,以某煤矿工程为例,开展其井下作业过程自动化钻机钻速模糊比例-积分-微分(Proportion Integral Differential,PID)自适应控制方法的设计研究。根据钻机的动力系统,建立钻机...为提高井下作业质量,实现对钻机在工作中转速的精确、高效控制,以某煤矿工程为例,开展其井下作业过程自动化钻机钻速模糊比例-积分-微分(Proportion Integral Differential,PID)自适应控制方法的设计研究。根据钻机的动力系统,建立钻机动力函数,计算钻机推力,建立煤矿井下自动化钻机数学模型。将输入变量(转速误差、误差变化率)精确值转换为模糊集合的隶属度,设计基于模糊PID的钻机转速输入控制。在钻机上安装多种传感器,实时监测钻机的各项工作参数,利用模糊PID控制器,进行自动化钻机转速的自适应调节。对比实验结果表明:设计的方法可以实现对钻机转速的快速、准确控制,保证钻进速度的稳定性。展开更多
常规的轧钢加热炉煤气智能燃烧控制方法主要使用Fuzzy双交叉限幅控制器进行控制阶跃响应,易受温变超调作用的影响,导致燃烧效率偏低。基于此,提出一种基于比例-积分-微分(Proportion Integral Differential,PID)算法的轧钢加热炉煤气智...常规的轧钢加热炉煤气智能燃烧控制方法主要使用Fuzzy双交叉限幅控制器进行控制阶跃响应,易受温变超调作用的影响,导致燃烧效率偏低。基于此,提出一种基于比例-积分-微分(Proportion Integral Differential,PID)算法的轧钢加热炉煤气智能燃烧控制方法。生成轧钢加热炉煤气智能燃烧控制策略,利用PID算法设计轧钢加热炉煤气智能燃烧控制器,从而实现轧钢加热炉煤气智能燃烧控制。实验结果表明,设计的轧钢加热炉煤气智能燃烧PID算法控制方法在不同控制起始时间下的煤气智能燃烧效率均较高,控制性能良好,具有较高的实际应用价值。展开更多
为提升机电一体化系统的智能化水平与控制精度,基于数字建模技术设计一个机电一体化智能控制系统,着重论述系统架构、核心硬件设计、电动机数字化模型构建、基于模糊神经网络比例-积分-微分(Proportional Integral Derivative,PID)的调...为提升机电一体化系统的智能化水平与控制精度,基于数字建模技术设计一个机电一体化智能控制系统,着重论述系统架构、核心硬件设计、电动机数字化模型构建、基于模糊神经网络比例-积分-微分(Proportional Integral Derivative,PID)的调速设计以及智能控制调节等方面。在系统硬件设计部分,详细阐述系统组成和核心设备的选用;在数字建模部分,构建电动机的数字化模型,设计模糊神经网络PID调速策略,实现更精准的速度控制。通过恒定负载调速实验测试系统,结果表明,该系统能够有效提升机电一体化系统的调速性能与控制精度,可为机电一体化智能控制系统的研发与应用提供有力参考。展开更多
基金Civil Project of China Aerospace Science and Technology CorporationUniversity-Industry Collaborative Education Program of Ministry of Education of China(No.220906517214433)。
文摘Aiming at solving the problems of response lag and lack of precision and stability in constant grinding force control of industrial robot belts,a constant force control strategy combining fuzzy control and proportion integration differentiation(PID)was proposed by analyzing the signal transmission process and the dynamic characteristics of the grinding mechanism.The simulation results showed that compared with the classical PID control strategy,the system adjustment time was shortened by 98.7%,the overshoot was reduced by 5.1%,and the control error was 0.2%-0.5%when the system was stabilized.The optimized fuzzy control system had fast adjustment speeds,precise force control and stability.The experimental analysis of the surface morphology of the machined blade was carried out by the industrial robot abrasive grinding mechanism,and the correctness of the theoretical analysis and the effectiveness of the control strategy were verified.
基金National Natural Science Foundation of China(No.61374114)Natural Science Foundation of Liaoning Province,China(No.2015020022)the Fundamental Research Funds for the Central Universities,China(No.3132015039)
文摘The technology of attitude control for quadrotor unmanned aerial vehicles(UAVs) is one of the most important UAVs' research areas.In order to achieve a satisfactory operation in quadrotor UAVs having proportional integration differential(PID) controllers,it is necessary to appropriately adjust the controller coefficients which are dependent on dynamic parameters of the quadrotor UAV and any changes in parameters and conditions could affect desired performance of the controller.In this paper,combining with PID control and fuzzy logic control,a kind of fuzzy self-adaptive PID control algorithm for attitude stabilization of the quadrotor UAV was put forward.Firstly,the nonlinear model of six degrees of freedom(6-DOF) for quadrotor UAV is established.Secondly,for obtaining the attitude of quadrotor,attitude data fusion using complementary filtering is applied to improving the measurement accuracy and dynamic performance.Finally,the attitude stabilization control simulation model of the quadrotor UAV is build,and the self-adaptive fuzzy parameter tuning rules for PID attitude controller are given,so as to realize the online self-tuning of the controller parameters.Simulation results show that comparing with the conventional PID controller,this attitude control algorithm of fuzzy self-adaptive PID has a better dynamic response performance.
基金Project supported bY the National Natural Science Foundation of China (Grant No.50375085), and the Natural Science Foundation of Shandong Province (Grant No.Y2002F13)
文摘A closed-chain robot has several advantages over an open-chain robot, such as high mechanical rigidity, high payload, high precision. Accurate trajectory control of a robot is essential in practical-use. This paper presents an adaptive proportional integral differential (PID) control algorithm based on radial basis function (RBF) neural network for trajectory tracking of a two-degree-of-freedom (2-DOF) closed-chain robot. In this scheme, an RBF neural network is used to approximate the unknown nonlinear dynamics of the robot, at the same time, the PID parameters can be adjusted online and the high precision can be obtained. Simulation results show that the control algorithm accurately tracks a 2-DOF closed-chain robot trajectories. The results also indicate that the system robustness and tracking performance are superior to the classic PID method.
文摘针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定位精度(偏移半径)和推进器利用效率的影响。结果表明,随着K p的增大,推进器利用效率增加,甚至出现过盈的现象,偏移半径则是先减小后增大。采用控制变量法对K_(d)取值进行验证,表明随着K_(d)的增大,推进器利用效率增加,偏移半径反而有增大的趋势。研究为DP数值模拟中PID参数的选择提供依据。
基金High Level Talented Person Funded Project of Hebei Province(No.C2013005003)Excellent Experts for Going Abroad Training Program of Hebei Province(No.10215601D)
文摘The hose pulse testing bench generally uses electro-hydraulic servo system. It occupies little space, tracks signals fast and has simple structure, and therefore it is widely used in industrial control field. However, there are lots of problems such as little accuracy and instability caused by slow response of hydraulic and various interference factors. Simple proportional integra- tion derivatiation (PID) control method of traditional pulse bench is simple in principle, but it is difficult in parameter adjust- ment. According to the special requirements of the control system, a PID method based on fuzzy control is proposed in the pa- per. This method not only retains the advantages of the conventional control system, but also ameliorates the drawbacks of parameter uncertainty, instability and lag. It has been testified that the method is practicable and can improve the precision and adaptation.
基金Supported by National Natural Science Foundation of China(No.60972054)National High Technology Research and Development Program of China("863"Program,No.2009AA011507)
文摘Asymmetric stereoscopic video coding can take advantage of binocular suppression in human vision by representing one of the two views in lower quality.This paper proposes a bit allocation strategy for asymmetric stereoscopic video coding.In order to improve the accuracy of bit allocation and rate control in the left view,a proportionalintegral-derivative controller is adopted.Meanwhile,to control the quality fluctuation between consecutive frames of the left view,a quality controller is adopted.Besides,a fuzzy controller is proposed to control the variation in quality between the left and right views by comparing the PSNR disparity of two views with a fixed threshold,which is used to quantize the binocular psycho-visual redundancy and adjust the quantization parameter (QP) of the right view correspondingly.The proposed algorithm has been implemented in H.264/AVC video codec,and the experimental results show its effectiveness in rate control while keeping a good quality for the left view,and fewer bits are allocated for the right view so that the overall bit rate is saved by 7.2% at most without the loss of subjective visual quality for stereoscopic video.
文摘为提高井下作业质量,实现对钻机在工作中转速的精确、高效控制,以某煤矿工程为例,开展其井下作业过程自动化钻机钻速模糊比例-积分-微分(Proportion Integral Differential,PID)自适应控制方法的设计研究。根据钻机的动力系统,建立钻机动力函数,计算钻机推力,建立煤矿井下自动化钻机数学模型。将输入变量(转速误差、误差变化率)精确值转换为模糊集合的隶属度,设计基于模糊PID的钻机转速输入控制。在钻机上安装多种传感器,实时监测钻机的各项工作参数,利用模糊PID控制器,进行自动化钻机转速的自适应调节。对比实验结果表明:设计的方法可以实现对钻机转速的快速、准确控制,保证钻进速度的稳定性。
文摘常规的轧钢加热炉煤气智能燃烧控制方法主要使用Fuzzy双交叉限幅控制器进行控制阶跃响应,易受温变超调作用的影响,导致燃烧效率偏低。基于此,提出一种基于比例-积分-微分(Proportion Integral Differential,PID)算法的轧钢加热炉煤气智能燃烧控制方法。生成轧钢加热炉煤气智能燃烧控制策略,利用PID算法设计轧钢加热炉煤气智能燃烧控制器,从而实现轧钢加热炉煤气智能燃烧控制。实验结果表明,设计的轧钢加热炉煤气智能燃烧PID算法控制方法在不同控制起始时间下的煤气智能燃烧效率均较高,控制性能良好,具有较高的实际应用价值。
文摘为提升机电一体化系统的智能化水平与控制精度,基于数字建模技术设计一个机电一体化智能控制系统,着重论述系统架构、核心硬件设计、电动机数字化模型构建、基于模糊神经网络比例-积分-微分(Proportional Integral Derivative,PID)的调速设计以及智能控制调节等方面。在系统硬件设计部分,详细阐述系统组成和核心设备的选用;在数字建模部分,构建电动机的数字化模型,设计模糊神经网络PID调速策略,实现更精准的速度控制。通过恒定负载调速实验测试系统,结果表明,该系统能够有效提升机电一体化系统的调速性能与控制精度,可为机电一体化智能控制系统的研发与应用提供有力参考。