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Design of a Proportional-Integral-Derivative Controller for an Automatic Generation Control of Multi-area Power Thermal Systems Using Firefly Algorithm 被引量:5
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作者 K.Jagatheesan B.Anand +3 位作者 Sourav Samanta Nilanjan Dey Amira S.Ashour Valentina E.Balas 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2019年第2期503-515,共13页
Essentially, it is significant to supply the consumer with reliable and sufficient power. Since, power quality is measured by the consistency in frequency and power flow between control areas. Thus, in a power system ... Essentially, it is significant to supply the consumer with reliable and sufficient power. Since, power quality is measured by the consistency in frequency and power flow between control areas. Thus, in a power system operation and control,automatic generation control(AGC) plays a crucial role. In this paper, multi-area(Five areas: area 1, area 2, area 3, area 4 and area 5) reheat thermal power systems are considered with proportional-integral-derivative(PID) controller as a supplementary controller. Each area in the investigated power system is equipped with appropriate governor unit, turbine with reheater unit, generator and speed regulator unit. The PID controller parameters are optimized by considering nature bio-inspired firefly algorithm(FFA). The experimental results demonstrated the comparison of the proposed system performance(FFA-PID)with optimized PID controller based genetic algorithm(GAPID) and particle swarm optimization(PSO) technique(PSOPID) for the same investigated power system. The results proved the efficiency of employing the integral time absolute error(ITAE) cost function with one percent step load perturbation(1 % SLP) in area 1. The proposed system based FFA achieved the least settling time compared to using the GA or the PSO algorithms, while, it attained good results with respect to the peak overshoot/undershoot. In addition, the FFA performance is improved with the increased number of iterations which outperformed the other optimization algorithms based controller. 展开更多
关键词 Automatic generation control(AGC) FIREFLY ALGORITHM GENETIC algorithm(GA) particle SWARM optimization(PSO) proportional-integral-derivative(piD) controller
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Fractional Order Proportional Integral Derivative Controller Design and Simulation for Bioengineering Systems
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作者 Wei-Cheng Fu Chun-Yang Wang +1 位作者 Yao-Wu Shi Ying-Bin Sun 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2013年第5期46-50,共5页
This paper deals with the study of fractional order system tuning method based on Factional Order Proportional Integral Derivative( FOPID) controller in allusion to the nonlinear characteristics and fractional order m... This paper deals with the study of fractional order system tuning method based on Factional Order Proportional Integral Derivative( FOPID) controller in allusion to the nonlinear characteristics and fractional order mathematical model of bioengineering systems. The main contents include the design of FOPID controller and the simulation for bioengineering systems. The simulation results show that the tuning method of fractional order system based on the FOPID controller outperforms the fractional order system based on Fractional Order Proportional Integral( FOPI) controller. As it can enhance control character and improve the robustness of the system. 展开更多
关键词 ROBUSTNESS bioengineering systems fractional order proportional integral derivative controller
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Proportion Integration Differentiation(PID)Control Strategy of Belt Sander Based on Fuzzy Algorithm
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作者 陈坤 张亚伟 +1 位作者 张振 桂志伟 《Journal of Donghua University(English Edition)》 CAS 2023年第2期177-184,共8页
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
关键词 grinding mechanism constant force control strategy fuzzy control proportion integration differentiation(piD)
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Adaptive proportional integral differential control based on radial basis function neural network identification of a two-degree-of-freedom closed-chain robot
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作者 陈正洪 王勇 李艳 《Journal of Shanghai University(English Edition)》 CAS 2008年第5期457-461,共5页
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
关键词 closed-chain robot radial basis function (RBF) neural network adaptive proportional integral differential (piD) control identification neural network
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Intelligent Fractional-Order Controller for SMES Systems in Renewable Energy-Based Microgrid
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作者 Aadel M.Alatwi Abualkasim Bakeer +3 位作者 Sherif A.Zaid Ibrahem E.Atawi Hani Albalawi Ahmed M.Kassem 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第8期1807-1830,共24页
An autonomous microgrid that runs on renewable energy sources is presented in this article.It has a supercon-ducting magnetic energy storage(SMES)device,wind energy-producing devices,and an energy storage battery.Howe... An autonomous microgrid that runs on renewable energy sources is presented in this article.It has a supercon-ducting magnetic energy storage(SMES)device,wind energy-producing devices,and an energy storage battery.However,because such microgrids are nonlinear and the energy they create varies with time,controlling and managing the energy inside them is a difficult issue.Fractional-order proportional integral(FOPI)controller is recommended for the current research to enhance a standalone microgrid’s energy management and performance.The suggested dedicated control for the SMES comprises two loops:the outer loop,which uses the FOPI to regulate the DC-link voltage,and the inner loop,responsible for regulating the SMES current,is constructed using the intelligent FOPI(iFOPI).The FOPI+iFOPI parameters are best developed using the dandelion optimizer(DO)approach to achieve the optimum performance.The suggested FOPI+iFOPI controller’s performance is contrasted with a conventional PI controller for variations in wind speed and microgrid load.The optimal FOPI+iFOPI controller manages the voltage and frequency of the load.The behavior of the microgrid as a reaction to step changes in load and wind speed was measured using the proposed controller.MATLAB simulations were used to evaluate the recommended system’s performance.The results of the simulations showed that throughout all interruptions,the recommended microgrid provided the load with AC power with a constant amplitude and frequency.In addition,the required load demand was accurately reduced.Furthermore,the microgrid functioned incredibly well despite SMES and varying wind speeds.Results obtained under identical conditions were compared with and without the best FOPI+iFOPI controller.When utilizing the optimal FOPI+iFOPI controller with SMES,it was found that the microgrid performed better than the microgrid without SMES. 展开更多
关键词 Fractional-order proportional integral(FOpi) intelligent controller renewable energy resources superconducting magnetic energy storage OPTIMIZATION
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Fuzzy Self-adaptive Proportional Integration Differential Control for Attitude Stabilization of Quadrotor UAV 被引量:4
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作者 范云生 曹亚博 +1 位作者 郭晨 王国峰 《Journal of Donghua University(English Edition)》 EI CAS 2016年第5期768-773,共6页
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
关键词 attitude stabilization tuning unmanned satisfactory freedom desired vertex autonomy trapped
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基于改进麻雀优化PID的波浪补偿控制方法 被引量:2
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作者 张琴 蔡慧茹 +2 位作者 兰明东 浦克 胡雄 《工程科学与技术》 EI CAS CSCD 北大核心 2024年第1期22-34,共13页
随着海上风电“十四五”规划的不断推动,在深远海域对兆瓦级大功率海上风机的需求量随之增加,其规模也在不断扩大。但是,在吊运、安装等海上工作过程中,复杂海浪对船舶产生的持续影响导致风机安装的精度和效率大幅下降,甚至会对人员安... 随着海上风电“十四五”规划的不断推动,在深远海域对兆瓦级大功率海上风机的需求量随之增加,其规模也在不断扩大。但是,在吊运、安装等海上工作过程中,复杂海浪对船舶产生的持续影响导致风机安装的精度和效率大幅下降,甚至会对人员安全以及财产造成重大损失。在深远海域复杂海况下对工程船舶进行有效的波浪补偿,可提供稳定的作业环境以保证精准高效地完成各项工作,因此,本文提出了一种基于改进麻雀优化PID的波浪补偿控制方法并将其应用于Stewart补偿平台。首先,建立波浪补偿平台动力学以及运动学反解模型,并设计正解模型迭代求解算法。随后,使用PID进行波浪补偿控制,并通过麻雀搜索算法优化参数。接着,采用Circle混沌映射对其进行初始化分布,以解决初始化不均匀的问题;并采用动态自适应加权、柯西突变以及反向学习以提升算法全局寻优能力。最后,生成4~6级海况下的某工程船运动数据作为系统输入,利用MATLAB和Simulink软件平台搭建模型进行补偿控制验证,并在Stewart硬件平台上做补偿试验。结果表明,改进麻雀搜索算法具有较快的收敛速度、较高的精度和更好的寻优能力,优化后的PID控制方法更适合用于复杂海况下波浪补偿平台的控制优化,可为大功率海上风机安装的补偿平台控制系统设计提供参考。 展开更多
关键词 波浪补偿平台 3自由度补偿 比例积分微分控制器 改进麻雀搜索算法
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数控压机伺服控制系统复合控制器I-ABC与PID优化 被引量:1
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作者 陈杰 泮进明 《机械设计与制造》 北大核心 2024年第1期200-203,共4页
为了提高数控压机伺服控制系统的控制精度,针对伺服控制系统运行控制过程构建数学模型,在人工蜂群算法基础上融入了云分析模型,之后采用改进人工蜂群算法(Improved Artificial Bee Colony,I-ABC)调节比例-积分-微分(Proportional Integr... 为了提高数控压机伺服控制系统的控制精度,针对伺服控制系统运行控制过程构建数学模型,在人工蜂群算法基础上融入了云分析模型,之后采用改进人工蜂群算法(Improved Artificial Bee Colony,I-ABC)调节比例-积分-微分(Proportional Integral Differential,PID)参数,建立了一种复合控制方法。研究结果表明:以I-ABC进行PID控制时,可以使幅度差降低到0.4%,相位差基本在-0.54°之内,系统加载精度也获得了明显提升,表现出了更优的跟踪性能。以I-ABC进行PID控制时,能够对多余力起到明显抑制作用,响应速度也获得明显提升,可以有效满足系统的准确控制要求。在系统内加入干扰信号,引入I-ABC实施PID调节可以减小系统超调量,还可以获得更短调节时间,使系统获得更强抗干扰性能。 展开更多
关键词 数控压机 伺服控制系统 改进人工蜂群算法 比例-积分-微分 复合控制器 抗干扰
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有源电力滤波器补偿的PI解耦控制技术研究
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作者 孙文革 《自动化仪表》 CAS 2024年第4期51-56,共6页
电网中电压和电流波形的失真会产生谐波,导致电网功率因数降低,并影响电力系统的稳定性和可靠性。为了确保电力系统的正常工作,研究了基于有源电力滤波器补偿的比例积分(PI)解耦控制技术。设计了基于二极管钳位式的有源电力滤波器模型... 电网中电压和电流波形的失真会产生谐波,导致电网功率因数降低,并影响电力系统的稳定性和可靠性。为了确保电力系统的正常工作,研究了基于有源电力滤波器补偿的比例积分(PI)解耦控制技术。设计了基于二极管钳位式的有源电力滤波器模型。结合基尔霍博电压法,降低控制谐波和解除部分变量耦合。针对设备非线性产生的谐波,分析有源电力滤波器的可逆性,获得输入雅可比矩阵,以实现滤波器旋转坐标的线性化。利用变换矩阵转换转动角速向量,输入谐波的幅度,输出电流取样延迟,完成无差PI解耦控制。试验结果表明,所提技术能够有效解耦滤波器的谐波电流成分,从而补偿电网中的失真电流。该技术可以减少谐波对电力系统的整体影响,保证设备的正常运行。 展开更多
关键词 有源电力滤波器 谐波补偿 比例积分解耦控制 雅可比矩阵 电流互感器 开环传递函数 基尔霍博电压法
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Improved single-neuron PID controller for DC motor applied in robot system 被引量:5
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作者 苏晓东 罗庆生 郅威 《Journal of Beijing Institute of Technology》 EI CAS 2012年第4期472-478,共7页
An improved single-neuron proportional integral derivative ( PID ) controller and a new method to build the DC motor system were presented in the article. In the simulation, the robot arm is considered as an externa... An improved single-neuron proportional integral derivative ( PID ) controller and a new method to build the DC motor system were presented in the article. In the simulation, the robot arm is considered as an external load to DC motor. Both the motor module and the load module are crea- ted in Simulink to achieve simulation results closer to real robot system. In this way, it can well veri- fy the performance of the improved single-neuron PID controller, which is a combined controller of normal PID controller and single-neuron PID controller. Besides, an intelligent switcher can help to realize the function of choosing a better control algorithm according to motor' s velocity output. Sim- ulated results confirm the rapid and stable response of the improved PID controller. Moreover, the improved single-neuron PID controller has an excellent ability to overcome the load impact and su- press the jamming signals. At last, a GUI interface platform is built to make the controller easier to be applied in other robot systems. 展开更多
关键词 robot control system DC motor proportional integral derivative (piD) single-neuron
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Robust PID controller design for time delay processes with peak of maximum sensitivity criteria 被引量:5
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作者 Mohammad Shamsuzzoha 《Journal of Central South University》 SCIE EI CAS 2014年第10期3777-3786,共10页
The motivation of this work is to obtain single PI/PID tuning formula for different types of processes with enhanced disturbance rejection performance. The proposed tuning formula consistently gives better performance... The motivation of this work is to obtain single PI/PID tuning formula for different types of processes with enhanced disturbance rejection performance. The proposed tuning formula consistently gives better performance in comparison to several well-known methods at the same degree of robustness for stable, integrating and unstable processes. For the selection of the closed-loop time constant(τc), a guideline is provided over a broad range of time-delay/time-constant ratios on the basis of the peak of maximum sensitivity(Ms). An analysis has been performed for the uncertainty margin with the different process parameters for the robust controller design. It gives the guideline of the Ms-value settings for the PI controller designs based on the process parameters uncertainty. Furthermore, a relationship has been developed between Ms-value and uncertainty margin with the different process parameters(k, τ and θ). Simulation study has been conducted for the broad class of processes and the controllers are tuned to have the same degree of robustness by measuring the maximum sensitivity, Ms, in order to obtain a reasonable comparison. 展开更多
关键词 pi/piD controller tuning internal model control(IMC) method unstable delay process integrating delay process disturbance rejection
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基于自适应PI控制的superbuck变换器
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作者 王胤瑜 洪昊 +1 位作者 朱立颖 童乔凌 《电力电子技术》 2024年第10期89-92,共4页
针对superbuck变换器稳定性易受参数偏移和工况变化影响的问题,提出了一种基于瞬态事件捕获的自适应比例积分(PI)控制方法。在该方法中,事件捕获电路通过计算瞬态响应中输出电压的上冲和下冲次数,根据振荡周期把电压响应分类成不同的瞬... 针对superbuck变换器稳定性易受参数偏移和工况变化影响的问题,提出了一种基于瞬态事件捕获的自适应比例积分(PI)控制方法。在该方法中,事件捕获电路通过计算瞬态响应中输出电压的上冲和下冲次数,根据振荡周期把电压响应分类成不同的瞬态事件。更进一步,对不同的瞬态事件进行加权计算得到PI控制器中的增益,从而调节系统带宽和相位裕度。在阻尼网络发生参数偏移的情况下,当参考电压从25 V变化到28 V时,振荡最大幅度从2 V减小到400 mV。100 W superbuck变换器的实验结果表明,自适应PI控制器在参数偏移和工况变化下有效地改善稳定性。 展开更多
关键词 变换器 瞬态事件捕获 自适应比例积分控制
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PSO Based Multi-Objective Approach for Controlling PID Controller 被引量:2
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作者 Harsh Goud Prakash Chandra Sharma +6 位作者 Kashif Nisar Ag.Asri Ag.Ibrahim Muhammad Reazul Haque Narendra Singh Yadav Pankaj Swarnkar Manoj Gupta Laxmi Chand 《Computers, Materials & Continua》 SCIE EI 2022年第6期4409-4423,共15页
CSTR(Continuous stirred tank reactor)is employed in process control and chemical industries to improve response characteristics and system efficiency.It has a highly nonlinear characteristic that includes complexities... CSTR(Continuous stirred tank reactor)is employed in process control and chemical industries to improve response characteristics and system efficiency.It has a highly nonlinear characteristic that includes complexities in its control and design.Dynamic performance is compassionate to change in system parameterswhich need more effort for planning a significant controller for CSTR.The reactor temperature changes in either direction from the defined reference value.It is important to note that the intensity of chemical actions inside the CSTR is dependent on the various levels of temperature,and deviation from reference values may cause degradation of biomass quality.Design and implementation of an appropriate adaptive controller for such a nonlinear system are essential.In this paper,a conventional Proportional Integral Derivative(PID)controller is designed.The conventional techniques to deal with constraints suffer severe limitations like it has fixed controller parameters.Hence,A novel method is applied for computing the PID controller parameters using a swarm algorithm that overcomes the conventional controller’s limitation.In the proposed technique,PID parameters are tuned by Particle Swarm Optimization(PSO).It is not easy to choose the suitable objective function to design a PID controller using PSO to get an optimal response.In this article,a multi-objective function is proposed for PSO based controller design of CSTR. 展开更多
关键词 Particle swarm optimization multi-objective PSO continuous stirred tank reactor proportional integral derivative controller
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Design of Nichols PID Controller for Load Frequency Control 被引量:10
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作者 KONG Fannie LI Xiaocong +1 位作者 WU Jiekang GUO Zhuangzhi 《中国电机工程学报》 EI CSCD 北大核心 2012年第22期I0011-I0011,15,共1页
为解决互联水电系统负荷频率控制(load frequencycontrol,LFC)问题,及保持互联电网系统频率、联络线功率及区域控制误差(area control error,ACE)的稳定,根据闭环系统谐振峰值与系统响应最大峰值之间的关系,构建一个与系统参数及控... 为解决互联水电系统负荷频率控制(load frequencycontrol,LFC)问题,及保持互联电网系统频率、联络线功率及区域控制误差(area control error,ACE)的稳定,根据闭环系统谐振峰值与系统响应最大峰值之间的关系,构建一个与系统参数及控制器参数都相关的优化问题,通过该问题的求解获得控制器参数与系统参数之间的数学关系,针对水轮发电系统非最小相位特性,通过串加比例–微分(proportional-derivative,PD)控制方式降低系统阶次,设计尼科尔斯(Nichols)曲线的比例–积分–微分(proportional-integral-derivative,PID)控制器。基于模型参数扰动和负荷干扰的仿真结果表明:尼科尔斯PID控制器能快速调整系统频率偏差、联络线功率偏差及ACE为0,具有良好的鲁棒性能和抗负荷干扰性能,系统过渡过程性能明显优于传统PID调节器结果。 展开更多
关键词 负荷频率控制 piD控制器 设计 区域控制误差 自动控制理论 电力系统稳定 水电系统 提出问题
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基于比例谐振自耦PI控制的调速系统
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作者 关文卿 程艺 +1 位作者 窦满峰 晁世元 《西北工业大学学报》 EI CAS CSCD 北大核心 2024年第4期673-682,共10页
针对永磁同步电机调速系统矢量控制过程中,逆变器死区、电机磁场分布谐波以及电流在采样过程中存在误差等因素导致的电机控制效果不佳问题,提出了一种改进型自耦PI控制的双环控制策略。为减小信号的跟踪误差,采用加速度前馈的方式,将增... 针对永磁同步电机调速系统矢量控制过程中,逆变器死区、电机磁场分布谐波以及电流在采样过程中存在误差等因素导致的电机控制效果不佳问题,提出了一种改进型自耦PI控制的双环控制策略。为减小信号的跟踪误差,采用加速度前馈的方式,将增加Levant微分器的自耦PI控制器引入到永磁同步电机速度环中,确保对含有噪声的输入信号准确求导以提高系统的鲁棒性。另外,所提策略在电流环中将增加加速前馈的自耦PI控制结构的比例项和标准谐振器相结合,构成比例谐振自耦PI控制器,使永磁同步电机在电流环的控制中能更好地补偿电流,达到抑制电流谐波的作用。通过分析伺服系统的控制机理,在被控对象PMSM数学模型的基础上,给出了改进型自耦PI控制结构的设计方法。实验结果表明,所提出的控制策略能够减小电机自身参数变化对系统性能的影响并且在低速域具有良好的抑制电流谐波作用,验证了所设计的改进型自耦PI控制器的有效性。 展开更多
关键词 永磁同步电机 比例谐振自耦pi控制 非线性控制 谐波抑制
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Optimum Design of Fractional Order PID Controller for an AVR System Using an Improved Artificial Bee Colony Algorithm 被引量:15
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作者 ZHANG Dong-Li TANG Ying-Gan GUAN Xin-Ping 《自动化学报》 EI CSCD 北大核心 2014年第5期973-980,共8页
关键词 piD控制器 优化设计 VR系统 群算法 分数阶 工蜂 自动电压调节器 搜索范围
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基于改进MPC与RBF-PID的智能车轨迹跟踪控制
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作者 李臣旭 江浩斌 洪阳珂 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期1290-1301,共12页
为提升智能汽车轨迹跟踪控制的稳定性和精度,提出一种基于时域参数自适应MPC与RBF-PID的轨迹跟踪控制方法.首先搭建车辆横纵向动力学模型;其次分析控制时域与预测时域对跟踪精度的影响,设计时域参数自适应MPC横向控制器并进行仿真验证;... 为提升智能汽车轨迹跟踪控制的稳定性和精度,提出一种基于时域参数自适应MPC与RBF-PID的轨迹跟踪控制方法.首先搭建车辆横纵向动力学模型;其次分析控制时域与预测时域对跟踪精度的影响,设计时域参数自适应MPC横向控制器并进行仿真验证;然后基于径向基函数(RBF)神经网络整定PID控制参数,设计分层式纵向控制器,并设计折线速度曲线与PID算法进行对比;最后以车速为耦合点构建智能汽车横纵向综合控制系统,并在蛇形工况下对横纵向综合控制系统进行仿真实验.结果表明,所设计的横向控制器能保证低速时的跟踪精度和高速时的车辆稳定性,纵向控制器可有效提高速度跟踪精度,横纵向综合控制系统能实现车辆在变车速工况下对轨迹的精准跟踪,同时保证良好的行驶稳定性与舒适性. 展开更多
关键词 时域参数自适应 MPC RBF-piD 横纵向综合控制 轨迹跟踪
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基于神经网络PI的电静液作动器温度补偿控制方法研究
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作者 黄昊 刘家辉 +2 位作者 朱威霖 高光发 姚建勇 《液压气动与密封》 2024年第6期48-56,共9页
电静液作动器(Electro-hydrostatic Actuator,EHA)作为一种高性能集成化的动力执行器,广泛应用于航天航空、工业生产和军事领域。在不同油液温度下,液压油的体积弹性模量、黏度等性质会发生变化,从而对EHA的控制精度产生影响。针对此问... 电静液作动器(Electro-hydrostatic Actuator,EHA)作为一种高性能集成化的动力执行器,广泛应用于航天航空、工业生产和军事领域。在不同油液温度下,液压油的体积弹性模量、黏度等性质会发生变化,从而对EHA的控制精度产生影响。针对此问题,首先建立了EHA数学模型;其次,设计了反向传播(BP)神经网络对比例积分控制器(PI)控制参数进行在线调节,补偿温度变化对跟踪精度的影响;最后,通过实验验证了传统PI控制的EHA跟踪精度与温度变化有着密切关系,并将BPPI控制器与PI控制器进行实验对比。实验结果表明,所设计的BPPI控制器在不同油液温度下平均跟踪误差之间的差值较PI控制器降低80%以上;且在相同温度下,平均跟踪误差较PI控制器降低60%以上。 展开更多
关键词 电静液作动器 反向传播神经网络 温度补偿 比例积分控制
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全桥LLC谐振变换器的积分滑模-PI混合控制
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作者 赵玉友 黄晓蓉 +2 位作者 张庭森 彭忆强 刘昕然 《控制工程》 CSCD 北大核心 2024年第7期1286-1296,共11页
全桥LLC谐振变换器的PI控制存在响应慢和鲁棒性差的问题,滑模控制存在高频抖振问题。针对这些问题,提出了基于模糊规则切换的积分滑模-PI混合控制方法。首先,通过扩展函数描述法建立全桥LLC谐振变换器的大信号模型,利用输入输出反馈线... 全桥LLC谐振变换器的PI控制存在响应慢和鲁棒性差的问题,滑模控制存在高频抖振问题。针对这些问题,提出了基于模糊规则切换的积分滑模-PI混合控制方法。首先,通过扩展函数描述法建立全桥LLC谐振变换器的大信号模型,利用输入输出反馈线性化设计滑模面;然后,利用扫频法验证PI控制设计的合理性;最后,经多次实验,确定模糊控制的最佳输入和输出隶属度函数,实现在瞬态时由滑模控制起主导作用,在稳态时仅使用PI控制的混合控制方法。在MATLAB/Simulink中进行仿真分析,仿真结果表明,所提控制方法不仅具有滑模控制的瞬态响应快、鲁棒性强的优点,还消除了高频抖振,具有良好的控制效果。 展开更多
关键词 全桥LLC谐振变换器 积分滑模-pi混合控制 模糊切换控制 瞬态响应 稳态特性
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基于改进DDPG-PID的芯片共晶键合温度控制
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作者 刘家池 陈秀梅 邓娅莉 《半导体技术》 CAS 北大核心 2024年第11期973-980,共8页
芯片共晶键合对加热过程中的升温速率、保温时间和温度精度要求较高,在使用传统的比例-积分-微分(PID)温度控制方法时,存在响应时间过长、超调量过大、控制温度不够准确等问题。针对共晶加热台的温度控制问题,提出了一种基于改进的深度... 芯片共晶键合对加热过程中的升温速率、保温时间和温度精度要求较高,在使用传统的比例-积分-微分(PID)温度控制方法时,存在响应时间过长、超调量过大、控制温度不够准确等问题。针对共晶加热台的温度控制问题,提出了一种基于改进的深度确定性策略梯度(DDPG)强化学习算法优化PID参数的控制方法,采用分类经验回放的思想,以奖励值大小为标准对经验进行分类存放,根据智能体当前的状态和下一步动作,从相应的经验池中进行采样并训练,并根据PID控制算法的特性设计了合理的奖励函数,改善了强化学习中奖励稀疏的问题,提高了算法的收敛速度与性能。仿真结果表明,与传统PID控制、常规DDPG-PID控制相比,改进DDPG-PID控制缩短了响应时间,降低了超调量,近乎消除了稳态误差,提高了控制性能和系统稳定性。 展开更多
关键词 芯片共晶键合 深度确定性策略梯度(DDPG)算法 强化学习 温度控制 比例-积分-微分(piD)控制
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