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PID控制器参数的ITAE最佳设定公式 被引量:22
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作者 张福波 王国栋 +1 位作者 张殿华 刘相华 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2005年第8期755-758,共4页
针对一类可以由带有纯时间延迟的一阶模型来近似描述的被控对象,运用参数寻优及曲线拟合等方法得到了一组基于被控对象特征参数的PID控制器最佳设定公式.仿真结果表明:应用该方法所设计的PID控制系统具有超调小、调整时间短、稳态误差... 针对一类可以由带有纯时间延迟的一阶模型来近似描述的被控对象,运用参数寻优及曲线拟合等方法得到了一组基于被控对象特征参数的PID控制器最佳设定公式.仿真结果表明:应用该方法所设计的PID控制系统具有超调小、调整时间短、稳态误差小等特点,系统的动态特性较以往的经验公式有了大幅度提高.即使当对象纯滞后时间与时间常数的比值较大时仍然具有较好的控制效果.该方法简洁实用,不仅解决了常规PID控制系统参数整定不良的难题,同时也为进一步构造基于过程特征参数的自适应PID控制系统提供了有力的依据. 展开更多
关键词 一阶时滞系统 PID控制器 参数设定 曲线拟合 ITAE(integral Time ABSOLUTE Error) 特征参数
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过程控制系统的变积分系数Fuzzy-PI控制器设计 被引量:7
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作者 焦晓红 方一鸣 蔡满军 《系统工程与电子技术》 EI CSCD 北大核心 2001年第11期58-61,共4页
针对过程控制系统存在的非线性、纯滞后和负荷变化频繁的实际情况 ,提出了一种变积分系数的Fuzzy-PI控制器设计方法 :在系统的整个响应过程中模糊控制均存在 ,同时引入变系数的积分因子 ,构成Fuzzy -PI控制器。仿真结果表明 ,具有变积... 针对过程控制系统存在的非线性、纯滞后和负荷变化频繁的实际情况 ,提出了一种变积分系数的Fuzzy-PI控制器设计方法 :在系统的整个响应过程中模糊控制均存在 ,同时引入变系数的积分因子 ,构成Fuzzy -PI控制器。仿真结果表明 ,具有变积分系数的Fuzzy-PI控制器的过程控制系统既具有较快的动态响应 ,又有较高的稳态精度 ,而且整个响应过程具有很好的鲁棒性。 展开更多
关键词 过程控制系统 控制器 变积分系数
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Variable speed wind turbine for maximum power capture using adaptive fuzzy integral sliding mode control 被引量:8
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作者 Saravanakumar RAJENDRAN Debashisha JENA 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2014年第2期114-125,共12页
This paper presents a nonlinear control approach to variable speed wind turbine(VSWT)with a wind speed estimator.The dynamics of the wind turbine(WT)is derived from single mass model.In this work,a modified Newton Rap... This paper presents a nonlinear control approach to variable speed wind turbine(VSWT)with a wind speed estimator.The dynamics of the wind turbine(WT)is derived from single mass model.In this work,a modified Newton Raphson estimator has been considered for exact estimation of effective wind speed.The main objective of this work is to extract maximum energy from the wind at below rated wind speed while reducing drive train oscillation.In order to achieve the above objectives,VSWT should operate close to the optimal power coefficient.The generator torque is considered as the control input to achieve maximum energy capture.From the literature,it is clear that existing linear and nonlinear control techniques suffer from poor tracking of WT dynamics,increased power loss and complex control law.In addition,they are not robust with respect to input disturbances.In order to overcome the above drawbacks,adaptive fuzzy integral sliding mode control(AFISMC)is proposed for VSWT control.The proposed controller is tested with different types of disturbances and compared with other nonlinear controllers such as sliding mode control and integral sliding mode control.The result shows the better performance of AFISMC and its robustness to input disturbances.In this paper,the discontinuity in integral sliding mode controller is smoothed by using hyperbolic tangent function,and the sliding gain is adapted using a fuzzy technique which makes the controller more robust. 展开更多
关键词 Variable speed wind turbine integral sliding mode controller(ISMC) Sliding mode control(SMC) Adaptive fuzzy integral sliding mode control(AFISMC)
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A Novel Cascaded PID Controller for Automatic Generation Control Analysis With Renewable Sources 被引量:5
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作者 Aurobindo Behera Tapas Kumar Panigrahi +1 位作者 PrakashK·Ray Arun Kumar Sahoo 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2019年第6期1438-1451,共14页
Present day power scenarios demand a high quality uninterrupted power supply and needs environmental issues to be addressed. Both concerns can be dealt with by the introduction of the renewable sources to the existing... Present day power scenarios demand a high quality uninterrupted power supply and needs environmental issues to be addressed. Both concerns can be dealt with by the introduction of the renewable sources to the existing power system. Thus, automatic generation control(AGC) with diverse renewable sources and a modified-cascaded controller are presented in the paper.Also, a new hybrid scheme of the improved teaching learning based optimization-differential evolution(hITLBO-DE) algorithm is applied for providing optimization of controller parameters. A study of the system with a technique such as TLBO applied to a proportional integral derivative(PID), integral double derivative(IDD) and PIDD is compared to hITLBO-DE tuned cascaded controller with dynamic load change.The suggested methodology has been extensively applied to a 2-area system with a diverse source power system with various operation time non-linearities such as dead-band of, generation rate constraint and reheat thermal units. The multi-area system with reheat thermal plants, hydel plants and a unit of a wind-diesel combination is tested with the cascaded controller scheme with a different controller setting for each area. The variation of the load is taken within 1% to 5% of the connected load and robustness analysis is shown by modifying essential factors simultaneously by± 30%. Finally, the proposed scheme of controller and optimization technique is also tested with a 5-equal area thermal system with non-linearities. The simulation results demonstrate the superiority of the proposed controller and algorithm under a dynamically changing load. 展开更多
关键词 Automatic generation control(AGC) cascaded controller hybrid improved teaching learning based optimization-differential evolution(hITLBO-DE) algorithm integral of SQUARE time multiplied by SQUARE error(ISTSE)
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Adaptive fractional integral terminal sliding mode power control of UPFC in DFIG wind farm penetrated multimachine power system 被引量:6
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作者 P.K.Dash R.K.Patnaik S.P.Mishra 《Protection and Control of Modern Power Systems》 2018年第1期79-92,共14页
With an aim to improve the transient stability of a DFIG wind farm penetrated multimachine power system(MPN),an adaptive fractional integral terminal sliding mode power control(AFITSMPC)strategy has been proposed for ... With an aim to improve the transient stability of a DFIG wind farm penetrated multimachine power system(MPN),an adaptive fractional integral terminal sliding mode power control(AFITSMPC)strategy has been proposed for the unified power flow controller(UPFC),which is compensating the MPN.The proposed AFITSMPC controls the dq-axis series injected voltage,which controls the admittance model(AM)of the UPFC.As a result the power output of the DFIG stabilizes which helps in maintaining the equilibrium between the electrical and mechanical power of the nearby generators.Subsequently the rotor angular deviation of the respective generators gets recovered,which significantly stabilizes the MPN.The proposed AFITSMPC for the admittance model of the UPFC has been validated in a DFIG wind farm penetrated 2 area 4 machine power system in the MATLAB environment.The robustness and efficacy of the proposed control strategy of the UPFC,in contrast to the conventional PI control is vindicated under a number of intrinsic operating conditions,and the results analyzed are satisfactory. 展开更多
关键词 Adaptive fractional integral terminal sliding mode power control Doubly fed induction generator Multimachine power network Unified power flow controller
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Enhancement of Solar PV Panel Efficiency Using Double Integral Sliding Mode MPPT Control 被引量:1
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作者 Immadisetty Rahul Raju Hariharan 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2024年第1期271-283,共13页
The extraction of maximum power from the solar panels,using the sliding mode control scheme,becomes popular for partial weather atmospheric conditions due to its effective dynamic duty cycle ratio.However,the sliding ... The extraction of maximum power from the solar panels,using the sliding mode control scheme,becomes popular for partial weather atmospheric conditions due to its effective dynamic duty cycle ratio.However,the sliding mode control scheme was sophisticated with single integral and double integral sliding mode control scheme,which offer enhanced maximum power extraction and support enhanced solar panel efficiency in partial weather conditions.The operation of the sliding mode control scheme depends on the selection of a sliding surface selection based on the atmospheric weather condition,which enables the effective sliding duty cycle ratio operation for the DC/DC boost converter.The duty cycle ratio of the sliding mode control resembles the usual dynamic behavior to achieve enhanced efficiency compared to the various maximum power point tracking(MPPT)schemes.The major limitation of the sliding mode control scheme is to achieve the steady state voltage error of the solar panel in minimum settling time duration.The single integral sliding mode control scheme achieves the expected steady state voltage error limit but fails to achieve minimum settling time duration.Hence,the single integral sliding mode control is extended to a double integral sliding mode control scheme to achieve both steady state voltage error limits within the minimum settling time duration.This double integral sliding mode control scheme allows us to obtain the higher sliding surface duty cycle ratio which acts as the input signal to the boost converter.This activates the enhanced stable and reliable system operation,and nullifies the lacuna of maximum solar panel efficiency under partial weather conditions.Hence,this paper aims to present the design and performance operation of the double integral sliding mode(DISM)MPPT control scheme.To validate the performance analysis of the proposed DISM MPPT control scheme,the MATLAB/Simulink model is designed and verified.Also,the performance analysis of the proposed DISM MPPT control scheme is compared with 展开更多
关键词 maximum power point tracking(MPPT)schemes sliding mode controller(SMC) double integral sliding mode controller(DISMC) pulse width modulation(PWM) photovoltaic(PV)system
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A comparative study of semi-active control strategies for base isolated buildings 被引量:4
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作者 Oliveira F. Morais P. Suleman A. 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第3期487-502,共16页
A comparative analytical study of several control strategies for semi-active(SA) devices installed in baseisolated buildings aiming to reduce earthquake induced vibrations is presented.Three force tracking schemes com... A comparative analytical study of several control strategies for semi-active(SA) devices installed in baseisolated buildings aiming to reduce earthquake induced vibrations is presented.Three force tracking schemes comprising a linear controller plus a 'clipped' algorithm and a nonlinear output feedback controller(NOFC) are considered to tackle this problem.Linear controllers include the integral controller(I),the linear quadratic regulator(LQR) and the model predictive controller(MPC).A single degree-of-freedom system subjected to input accelerograms representative of the Portuguese seismic actions are first used to validate and evaluate the feasibility of these strategies.The obtained results show that structural systems using SA devices can in general outperform those equipped with passive devices for lower fundamental frequency structural systems,namely base-isolated buildings.The effectiveness of the proposed strategies is also evaluated on a 10 storey base-isolated dual frame-wall building.The force tracking scheme with an integral controller outperforms the other three as well as the original structure and the structure equipped with passive devices. 展开更多
关键词 semi-active control integral controller linear qua
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Robust backstepping global integral terminal sliding mode controller to enhance dynamic stability of hybrid AC/DC microgrids 被引量:3
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作者 Tushar Kanti Roy Subarto Kumar Ghosh Sajeeb Saha 《Protection and Control of Modern Power Systems》 SCIE EI 2023年第1期139-151,共13页
In this paper,a Backstepping Global Integral Terminal Sliding Mode Controller(BGITSMC)with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented.The proposed approach controls the ... In this paper,a Backstepping Global Integral Terminal Sliding Mode Controller(BGITSMC)with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented.The proposed approach controls the switch-ing signals of the inverter,interlinking the DC-bus with the AC-bus in an AC/DC microgrid for a seamless interface and regulation of the output power of renewable energy sources(Solar Photovoltaic unit,PMSG-based wind farm),and Battery Energy Storage System.The proposed control approach guarantees the dynamic stability of a hybrid AC/DC microgrid by regulating the associated states of the microgrid system to their intended values.The dynamic stabil-ity of the microgrid system with the proposed control law has been proved using the Control Lyapunov Function.A simulation analysis was performed on a test hybrid AC/DC microgrid system to demonstrate the performance of the proposed control strategy in terms of maintaining power balance while the system’s operating point changed.Furthermore,the superiority of the proposed approach has been demonstrated by comparing its performance with the existing Sliding Mode Control(SMC)approach for a hybrid AC/DC microgrid. 展开更多
关键词 Dynamic stability Hybrid AC/DC microgrids Power balance Robust backstepping controller Global integral terminal sliding mode controller Switching control signals
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飞机液压系统流量负载模拟器的变速积分PI控制 被引量:4
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作者 欧阳小平 赵天菲 +3 位作者 李锋 杨上保 朱莹 杨华勇 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2017年第6期1111-1118,共8页
为了抑制压力波动,对完整飞行剖面下的液压系统工作状态进行分析.针对飞机液压系统提出流量负载模拟器原理,设计新型变速积分PI控制器,建立系统数学模型,确定各参数取值,开展数值仿真和试验研究,指出该流量负载模拟器的优缺点.仿真和试... 为了抑制压力波动,对完整飞行剖面下的液压系统工作状态进行分析.针对飞机液压系统提出流量负载模拟器原理,设计新型变速积分PI控制器,建立系统数学模型,确定各参数取值,开展数值仿真和试验研究,指出该流量负载模拟器的优缺点.仿真和试验结果均表明,在完整飞行剖面下,液压系统的可用压力在20.4 MPa以上,液压系统稳定可靠.相比于增量式PI控制器,采用变速积分PI控制器的压力波动至少减小了40%. 展开更多
关键词 飞机液压系统 流量负载模拟 变速积分 泵源 飞行剖面 PI控制器
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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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不确定区间变时滞电力系统的镇定器设计 被引量:3
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作者 钱伟 吴嘉欣 费树岷 《电机与控制学报》 EI CSCD 北大核心 2020年第11期82-92,共11页
针对电力系统的稳定运行受大规模互联电网中时滞现象的严重影响,研究了不确定区间变时滞电力系统在受时滞影响时的稳定性分析及镇定器设计问题。首先,构造了包含一种新的增广向量和一种多重积分的Lyapunov-Krasovskii泛函。然后,在单重W... 针对电力系统的稳定运行受大规模互联电网中时滞现象的严重影响,研究了不确定区间变时滞电力系统在受时滞影响时的稳定性分析及镇定器设计问题。首先,构造了包含一种新的增广向量和一种多重积分的Lyapunov-Krasovskii泛函。然后,在单重Wirtinger积分不等式的基础上引入放缩程度更小的双重Wirtinger积分不等式对泛函导数进行估计,并采用凸组合方法,得到具有更小保守性的系统鲁棒性稳定判据。此外,设计了带记忆和无记忆反馈控制器,再对非线性项进行分步线性化处理,得到严格满足线性矩阵不等式的反馈控制器的设计条件。最后,通过仿真结果说明本文方法在提高控制器性能及扩大电力系统稳定运行区域方面具有更好地效果。 展开更多
关键词 电力系统 时滞 LYAPUNOV-KRASOVSKII泛函 积分不等式 反馈控制器
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基于加速度反馈的自适应积分控制微粒群算法
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作者 崔志华 曾建潮 孙国基 《小型微型计算机系统》 CSCD 北大核心 2007年第5期855-860,共6页
积分控制微粒群算法是一种新型的基于控制器的微粒群算法,该算法通过引入积分控制器,得到了带有加速度的进化方程.本文通过对该算法的稳定性分析,得到了算法收敛的充要条件,并通过实验,建立了一个新的判断算法性能指标的统计量-平均加... 积分控制微粒群算法是一种新型的基于控制器的微粒群算法,该算法通过引入积分控制器,得到了带有加速度的进化方程.本文通过对该算法的稳定性分析,得到了算法收敛的充要条件,并通过实验,建立了一个新的判断算法性能指标的统计量-平均加速度信息,利用该统计量,提出了一种基于加速度反馈的自适应积分控制微粒群算法.仿真实例证明了该算法能有效的提高算法效率. 展开更多
关键词 积分控制器 微粒群算法 平均加速度信息
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串级控制系统积分饱和分析及处理方法 被引量:2
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作者 王峥 黄俊谐 +2 位作者 王文俊 李伟 李小林 《热力发电》 CAS 北大核心 2013年第11期152-155,共4页
基于对串级控制系统积分饱和的分析,提出了改变PID2和修改PID1闭锁条件2种抗积分饱和方式,并基于Matlab平台对2种方式进行了仿真分析,结果表明修改PID1闭锁条件的抗积分饱和方式既可有效避免串级控制系统PID1的积分饱和,又能保证PID2的... 基于对串级控制系统积分饱和的分析,提出了改变PID2和修改PID1闭锁条件2种抗积分饱和方式,并基于Matlab平台对2种方式进行了仿真分析,结果表明修改PID1闭锁条件的抗积分饱和方式既可有效避免串级控制系统PID1的积分饱和,又能保证PID2的快速调节。 展开更多
关键词 串级控制系统 积分饱和 闭锁 主控制器 副控制器
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中频加热弯管机加工工艺仿真及控制算法研究 被引量:2
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作者 严方 《热加工工艺》 CSCD 北大核心 2015年第9期148-151,154,共5页
分析了大口径中频加热弯管机的弯管成形工艺及特点,并对弯管机的温度和速度控制等进行了仿真分析,提出利用改进的变积分PID算法进行大口径中频加热弯管机控制系统设计。仿真结果表明,该算法可提高推管速度对加热温度变化的响应速度;与... 分析了大口径中频加热弯管机的弯管成形工艺及特点,并对弯管机的温度和速度控制等进行了仿真分析,提出利用改进的变积分PID算法进行大口径中频加热弯管机控制系统设计。仿真结果表明,该算法可提高推管速度对加热温度变化的响应速度;与传统的变积分PID算法相比,能提高工艺的精确控制能力,使得系统具有良好的控制性能。 展开更多
关键词 变积分 PID控制器 中频加热 弯管机
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积分控制粒子群算法在再制造生产调度问题中的应用研究 被引量:2
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作者 温海骏 刘从虎 《科学技术与工程》 北大核心 2017年第16期191-195,共5页
针对不确定条件下再制造模糊加工时间的车间调度问题,建立了模糊工时调度模型,并提出了一种积分控制微粒群算法。考虑到基本粒子群算法易于早熟的缺点,通过增加控制器对粒子轨迹进行控制,在算法中引入加速度项,增强了种群多样性,提高了... 针对不确定条件下再制造模糊加工时间的车间调度问题,建立了模糊工时调度模型,并提出了一种积分控制微粒群算法。考虑到基本粒子群算法易于早熟的缺点,通过增加控制器对粒子轨迹进行控制,在算法中引入加速度项,增强了种群多样性,提高了算法全局寻优能力。通过仿真实例验证表明,该算法在解决不确定条件下再制造生产车间调度问题方面是行之有效的。 展开更多
关键词 再制造 生产调度 模糊加工时间 积分控制粒子群算法
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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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Indirect Vector Control of Linear Induction Motors Using Space Vector Pulse Width Modulation 被引量:1
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作者 Arjmand Khaliq Syed Abdul Rahman Kashif +5 位作者 Fahad Ahmad Muhammad Anwar Qaisar Shaheen Rizwan Akhtar Muhammad Arif Shah Abdelzahir Abdelmaboud 《Computers, Materials & Continua》 SCIE EI 2023年第3期6263-6287,共25页
Vector control schemes have recently been used to drive linear induction motors(LIM)in high-performance applications.This trend promotes the development of precise and efficient control schemes for individual motors.T... Vector control schemes have recently been used to drive linear induction motors(LIM)in high-performance applications.This trend promotes the development of precise and efficient control schemes for individual motors.This research aims to present a novel framework for speed and thrust force control of LIM using space vector pulse width modulation(SVPWM)inverters.The framework under consideration is developed in four stages.To begin,MATLAB Simulink was used to develop a detailed mathematical and electromechanical dynamicmodel.The research presents a modified SVPWM inverter control scheme.By tuning the proportional-integral(PI)controller with a transfer function,optimized values for the PI controller are derived.All the subsystems mentioned above are integrated to create a robust simulation of the LIM’s precise speed and thrust force control scheme.The reference speed values were chosen to evaluate the performance of the respective system,and the developed system’s response was verified using various data sets.For the low-speed range,a reference value of 10m/s is used,while a reference value of 100 m/s is used for the high-speed range.The speed output response indicates that themotor reached reference speed in amatter of seconds,as the delay time is between 8 and 10 s.The maximum amplitude of thrust achieved is less than 400N,demonstrating the controller’s capability to control a high-speed LIM with minimal thrust ripple.Due to the controlled speed range,the developed system is highly recommended for low-speed and high-speed and heavy-duty traction applications. 展开更多
关键词 Space vector pulse width modulation linear induction motor proportional-integral controller indirect vector control electromechanical dynamic modeling
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Vector control of induction motor based on fractional-order intelligent-integral speed controller 被引量:2
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作者 MIAO Zhong-cui HAN Tian-liang +1 位作者 DANG Jian-wu JU Mei 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2018年第2期125-133,共9页
To improve dynamic and static performances and robustness of the induction motor speed control system based on vector control,an improved fractional-order intelligent proportional integral(IPIλ)controller was applied... To improve dynamic and static performances and robustness of the induction motor speed control system based on vector control,an improved fractional-order intelligent proportional integral(IPIλ)controller was applied to the speed controller of the vector control system,which combined the intelligent fractional integral with the proportion according to the variation of deviation.Compared with proportional integral(PI)and fractional-order proportional integral(FOPI)controllers,the IPIλcontroller achieved better control performance.The stimulation results indicate that the IPIλcontroller can not only track the given speed quickly and accurately,but also have better anti-interference and robustness for load and parameters variations. 展开更多
关键词 fractional-order intelligent-integral induction motor speed controller
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基于专家知识的人工气候室控制系统设计 被引量:2
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作者 李智慧 张瑞 《计算机测量与控制》 CSCD 2006年第9期1168-1169,1172,共3页
介绍了小型人工气候室主要控制特点与相应的控制策略,以及基于专家知识的小型人工气候室控制系统及控制算法的设计,讨论了进行温度控制的方法及参数的设定方法;控制算法采用自整定PID控制技术并设计出PID控制器,同时对硬件采用模块化设... 介绍了小型人工气候室主要控制特点与相应的控制策略,以及基于专家知识的小型人工气候室控制系统及控制算法的设计,讨论了进行温度控制的方法及参数的设定方法;控制算法采用自整定PID控制技术并设计出PID控制器,同时对硬件采用模块化设计思想,方案简单易行;设计出的温湿度控制方案能拟合专家知识库中生物生长曲线,符合生物生长需要;人性化的人机交互界面方便操作;最后给出的仿真图像表明能使温度控制在一定精度范围内,效果良好。 展开更多
关键词 专家知识 人工气候室 积分分离PID控制器 模块化设计
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Comparative Analysis of Analog and Digital Controllers for Negative Output Superlift Luo Converter (NOSLC)
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作者 Chamundeeswari Vinayagam Seyezhai Ramalingam 《Circuits and Systems》 2016年第8期1689-1700,共12页
This paper focuses on the comparative study of analog and digital control techniques for Negative Output Superlift Luo converter (NOSLC). NOSLC is a high gain converter in which the positive source voltage is converte... This paper focuses on the comparative study of analog and digital control techniques for Negative Output Superlift Luo converter (NOSLC). NOSLC is a high gain converter in which the positive source voltage is converted into a negative load voltage. Though the negative load voltage is produced effectively, there is lot of non-linearities that affects the voltage level. To overcome this, analog controllers like Proportional-integral (PI), fuzzy PI and a sliding mode controller (SMC) were proposed for NOSLC. However PI controller does not respond to changes in operating point, fuzzy PI is based on the systematic approach and proved to be a trial and error oriented method and SMC brings an oscillation in the duty cycle. Therefore, to overcome these drawbacks, a digital control technique using PIC microcontroller is proposed in this paper which provides high versatility and programmability approach. Simulation studies are carried out in MATLAB and the performances of these controllers have been investigated for the proposed DC-DC converter. A prototype of the NOSLC converter is built by employing digital control and the results are verified experimentally. 展开更多
关键词 Proportional-integral FUZZY Sliding Mode Control Digital controller
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