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Design and Parametric Optimization of a Doublesided Linear Induction Motor for Hyperloop Pod 被引量:1
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作者 Bahaddin Goksun Ismet Sen +3 位作者 Musap Kuzucu Bati Eren Ergun Ilhan Kocaarslan Mehmet Onur Gulbahce 《CES Transactions on Electrical Machines and Systems》 2025年第1期36-45,共10页
The hyperloop idea,which is one of the most ecofriendly,low-carbon emissions,and fossil fuel-efficient modes of transportation,has recently become quite popular.In this study,a double-sided linear induction motor(LIM)... The hyperloop idea,which is one of the most ecofriendly,low-carbon emissions,and fossil fuel-efficient modes of transportation,has recently become quite popular.In this study,a double-sided linear induction motor(LIM)with 500 W of output power,60 N of thrust force and 200 V/38.58 Hz of supply voltage was designed to be used in hyperloop development competition hosted by the scientific and technological research council of turkey(TüB?TAK)rail transportation technologies institute(RUTE).In contrast to the studies in the literature,concentrated winding is preferred instead of distributed winding due to mechanical constraints.The electromagnetic design of LIM,whose mechanical and electrical requirements were determined considering the hyperloop development competition,was carried out by following certain steps.Then,the designed model was simulated and analyzed by finite element method(FEM),and the necessary optimizations have been performed to improve the motor characteristics.By examining the final model,the applicability of the concentrated winding type LIM for hyperloop technology has been investigated.Besides,the effects of primary material,railway material,and mechanical air-gap length on LIM performance were also investigated.In the practical phase of the study,the designed LIM has been prototyped and tested.The validation of the experimental results was achieved through good agreement with the finite element analysis results. 展开更多
关键词 Finite element analysis(FEA) Hyperloop linear induction motor(LIM) motor design
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Circle-criterion Based Nonlinear Observer Design for Sensorless Induction Motor Control 被引量:2
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作者 Wafa Bourbia Farid Berrezzek Bachir Bensaker 《International Journal of Automation and computing》 EI CSCD 2014年第6期598-604,共7页
This paper deals with the design of a nonlinear observer for sensorless induction motor control. Based upon the circle criterion approach, a nonlinear observer is designed to estimate pertinent but unmeasurable state ... This paper deals with the design of a nonlinear observer for sensorless induction motor control. Based upon the circle criterion approach, a nonlinear observer is designed to estimate pertinent but unmeasurable state variables of the considered induction machine for sensorless control purpose. The observer gain matrices are computed as a solution of linear matrix inequalities(LMI) that ensure the stability conditions of the state observer error dynamics in the sense of Lyapunov concepts. Measured and estimated state variables can be exploited to perform a state feedback control of the machine system. The simulation results are presented to illustrate the effectiveness of the proposed approach for nonlinear observer design. 展开更多
关键词 Nonlinear observer circle-criterion Lyapunov stability linear matrix inequalties (LMI) induction motor
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Linearizing Control of Induction Motor Based on Networked Control Systems 被引量:2
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作者 Jun Ren Chun-Wen Li De-Zong Zhao 《International Journal of Automation and computing》 EI 2009年第2期192-197,共6页
A new approach to speed control of induction motors is developed by introducing networked control systems (NCSs) into the induction motor driving system. The control strategy is to stabilize and track the rotor spee... A new approach to speed control of induction motors is developed by introducing networked control systems (NCSs) into the induction motor driving system. The control strategy is to stabilize and track the rotor speed of the induction motor when the network time delay occurs in the transport medium of network data. First, a feedback linearization method is used to achieve input-output linearization and decoupling control of the induction motor driving system based on rotor flux model, and then the characteristic of network data is analyzed in terms of the inherent network time delay. A networked control model of an induction motor is established. The sufficient condition of asymptotic stability for the networked induction motor driving system is given, and the state feedback controller is obtained by solving the linear matrix inequalities (LMIs). Simulation results verify the efficiency of the proposed scheme. 展开更多
关键词 induction motor feedback linearization networked control system (NCS) network time delay linear matrix inequality(LMI).
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Speed Identification of Speed Sensorless Linear Induction Motor Based on MRAS 被引量:2
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作者 Xuan Tu Xinguo Hou +2 位作者 Jinghong Zhao Sinian Yan Yiyong Xiong 《CES Transactions on Electrical Machines and Systems》 CSCD 2023年第3期294-300,共7页
In the linear induction motor control system,the optical grating speed transducer is susceptible to strong magnetic field interference.What's more,it may reduce motor integration and raise device costs.Therefore a... In the linear induction motor control system,the optical grating speed transducer is susceptible to strong magnetic field interference.What's more,it may reduce motor integration and raise device costs.Therefore a speed identification method to replace grating speed transducer is studied in this article.This speed identification method for linear induction motor mainly adopts Model Reference Adaptive Method(Abbreviated as MRAS)and Popov Hyperstability Theory.The research content of this paper can be divided into four parts.First,the mathematical model of the motor based on the model reference adaptive system structure is deduced.Second,the adaptive law of the estimated speed is solved by Popov hyper-stability theory,which ensures the stability of the system.Third,the simulation model of the linear induction motor speed identification control system based on model reference adaptation is built in the MATLAB environment.Finally,the simulation test and analysis are carried out.The simulation results show that the speed identification control system can track the actual speed of the linear induction motor well in the no-load operation and the load operation,and the stability of the system is guaranteed in the full speed range. 展开更多
关键词 linear induction motor Model reference adaptive system Speed sensorless Popov hyperstability
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Single neuron network PI control of high reliability linear induction motor for Maglev 被引量:1
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作者 FANG You-tong FAN Cheng-zhi 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第3期408-411,共4页
The paper deals with a new model of linear induction motor (LIM) to improve the reliability of the system. Based on the normal equation circuit of LIM considering the dynamic end effect, an equivalent circuit model wi... The paper deals with a new model of linear induction motor (LIM) to improve the reliability of the system. Based on the normal equation circuit of LIM considering the dynamic end effect, an equivalent circuit model with compensation of large end effect is constructed when the end effect force at synchronism is of braking character. The equivalent circuit model is used for secondary-flux oriented control of LIM. Single neuron network PI unit for LIM servo-drive is also discussed. The effectiveness of mathematical model for drive control is verified by simulations. 展开更多
关键词 linear induction motor (LIM) Field-oriented control End effect
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A novel method to calculate the thrust of linear induction motor based on instantaneous current value 被引量:3
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作者 Jiaqing MA Yunpeng ZHU Jing JIANG 《Journal of Modern Transportation》 2012年第2期76-81,共6页
Because of the end effect, a linear induction motor (LIM) runs in an asymmetrical state even though the winding of each phase is symmetric. Based on the basic principle of the LIM, a new approach was proposed to cal... Because of the end effect, a linear induction motor (LIM) runs in an asymmetrical state even though the winding of each phase is symmetric. Based on the basic principle of the LIM, a new approach was proposed to calculate the thrust of the LIM using the instantaneous current value. A three-phase LIM model with 12 slots and a singlelayer winding was designed to validate this method. The experiments show that when the current is small, the calculated results basically agree with the experiments. The agreement becomes worse with the increase of the current because of the saturation of the primary iron core. The proposed formula is suitable when the iron core of the LIM primary is in an unsaturated state. 展开更多
关键词 linear induction motor (LIM) asymmetrical state instantaneous current value
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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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The time and space characteristics of magnetomotive force in the cascaded linear induction motor 被引量:2
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作者 Dajing Zhou Jiaqing Ma +3 位作者 Lifeng Zhao Xiao Wan Yong Zhang Yong Zhao 《Journal of Modern Transportation》 2013年第3期194-199,共6页
To choose a reasonable mode of three-phase winding for the improvement of the operating efficiency of cascaded linear induction motor, the time and space characteristics of magnetomotive force were investigated. The i... To choose a reasonable mode of three-phase winding for the improvement of the operating efficiency of cascaded linear induction motor, the time and space characteristics of magnetomotive force were investigated. The ideal model of the cascaded linear induction motor was built, in which the B and C-phase windings are respectively separated from the A-phase winding by a distance of d and e slots pitch and not overlapped. By changing the values of d and e from 1 to 5, we can obtain 20 different modes of three-phase winding with the different combinations of d and e. Then, the air-gap magnetomotive forces of A-, B-, and C-phase windings were calculated by the magnetomotive force theory. According to the transient superposition of magnetomotive forces of A-, B-, and C-phase windings, the theoretical and simulated synthetic fundamental magnetomotive forces under 20 different arrangement modes were obtained. The results show that the synthetic magnetomotive force with d = 2 and e = 4 is close to forward sinusoidal traveling wave and the synthetic magnetomotive force with d = 4 and e = 2 is close to backward sinusoidal traveling wave, and their amplitudes and wave velocities are approximately constant and equal. In both cases, the motor could work normally with ahigh efficiency, but under other 18 arrangement modes (d= 1, e=2; d= 1, e=3; d= 1, e=4;...), the synthetic magnetomotive force presents obvious pulse vibration and moves with variable velocity, which means that the motor did not work normally and had high energy loss. 展开更多
关键词 linear induction motor -Three-phase winding Magnetomotive force
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Virtual Speed Sensorless Desired Control Strategy of Maglev Single-sided Linear Induction Motors 被引量:3
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作者 DENG Jiangming CHEN Tefang TANG Jianxiang ZHANG Guixin YU Mingyang 《中国电机工程学报》 EI CSCD 北大核心 2012年第27期I0006-I0006,182,共1页
单边短初级长次级直线感应电机己普遍应用于低速磁悬浮的驱动系统。由于在动态纵向边端效应影响下等效电路不对称,单边直线感应电机(single-sided linear inductionmotor,SLIM)的一些参数非线性变化。传统的应用于旋转电机的无速度... 单边短初级长次级直线感应电机己普遍应用于低速磁悬浮的驱动系统。由于在动态纵向边端效应影响下等效电路不对称,单边直线感应电机(single-sided linear inductionmotor,SLIM)的一些参数非线性变化。传统的应用于旋转电机的无速度传感器方法不再适用。首先分析了SLIM的M/T轴等效电路,选择次级磁链作为速度观测器状态变量。根据李雅普诺夫系统稳定性判据,推导出适用于SLIM的无速度传感器辨识;然后,采用反馈广义积分观测器控制稳态辨识速度的双幅脉振幅值;引入虚拟期望变量(virtualdesiredvariable,VDV)法,利用估算速度参与SLIM的恒滑差频率矢量控制。仿真与实验对所提控制算法的有效性和实用性进行了验证,所得结论可为磁悬浮的无速度传感器控制提供参考。 展开更多
关键词 无速度传感器控制 直线感应电机 磁悬浮 控制策略 直线感应电动机 单面 虚拟 SLIM
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Adaptive current compensation with nonlinear disturbance observer for single-sided linear induction motor considering dynamic eddy-effect
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作者 邓江明 陈特放 陈春阳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1716-1724,共9页
An adaptive current compensation control for a single-sided linear induction motor(SLIM) with nonlinear disturbance observer was developed. First, to maintain t-axis secondary component flux constant with consideratio... An adaptive current compensation control for a single-sided linear induction motor(SLIM) with nonlinear disturbance observer was developed. First, to maintain t-axis secondary component flux constant with consideration of the specially dynamic eddy-effect(DEE) of the SLIM, a instantaneously tracing compensation of m-axis current component was analyzed. Second,adaptive current compensation based on Taylor-discretization algorithm was proposed. Third, an effective kind of nonlinear disturbance observer(NDOB) was employed to estimate and compensate the undesired load vibrations, then the robustness of the control system could be guaranteed. Experimental verification of the feasibility of the proposed method for an SLIM control system was performed, and it showed that the proposed adaptive compensation scheme with NDOB could significantly promote speed dynamical response and minimize speed ripple under the conditions of external load coupled vibrations and unavoidable feedback control variables measured errors, i.e., current and speed. 展开更多
关键词 single-sided linear induction motors(SLIMs) current compensation adaptive control dynamical response nonlinear disturbance observer(NDOB)
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NEW PUNCHING MACHINE DRIVEN BY LINEAR INDUCTION MOTOR
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作者 Ye Yunyue Wu Changchun Lu Qinfen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2000年第3期224-227,共4页
The research and application of the punching machine driven by a linear induction motor(LIM)are introduced.The fundamental principle, construction, performance and application are described. Comparing this new model m... The research and application of the punching machine driven by a linear induction motor(LIM)are introduced.The fundamental principle, construction, performance and application are described. Comparing this new model machine with its traditional form, the LIM driven punching machine has many great advantages, such as, simple construction, small size and mass, low production cost, short production time, easy to control, low noise and considerable energy saving. 展开更多
关键词 Punching machine linear induction motor
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A new method to reduce end effect of linear induction motor
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作者 Xiaozhou GUO Bin ZHOU Jisan LIAN 《Journal of Modern Transportation》 2012年第2期88-92,共5页
A new method to compensate the end effect of a linear induction motor (LIM) in low-speed maglev vehicles is proposed. With this method, the motors are close to each other so that the front motor's exit-end magnetic... A new method to compensate the end effect of a linear induction motor (LIM) in low-speed maglev vehicles is proposed. With this method, the motors are close to each other so that the front motor's exit-end magnetic field extends into the next motor's entry zone. As a result, the motor's magnetic field traveling wave become continuous and the end effect of short primary LIMs is greatly weakened. In the analysis of the air-gap magnetic field distribution, the LIM is assumedly divided into two identical motors vcith the distances of 20, 40, 60, and gO ram. The results show that the air-gap magnetic field is still continuous within these distances due to LIM's end effect. As the distance between two motors increases, the distortion of the air-gap magnetic field becomes more severe. Then, we investigate the relationship between the secondary speed and the thrust in three cases, i.e., a single LIM, two motors divided with 72 mm with pole pitch corrected, and two motors divided with 60 mm without the pole pitch being corrected. We find that the thrust has a small decrease when the speed increases, which means that the magnetic field is already continuous and its amplitude is approximately a constant. Furthermore, the thrust loss of case 3 is more than that of case 2, which indicates that the pole pitch correction is effective. 展开更多
关键词 linear induction motor end effect compensation THRUST pole pitch correction
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A Study on an Airgap Control System in a Rotary-Small-Scaled Linear Induction Motor for Railway Vehicles
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作者 C.B. Park B.S. Lee 《Journal of Energy and Power Engineering》 2011年第12期1193-1198,共6页
In general, it is important to operate the; airgap length uniformly for improving the system efficiency independent of the flatness of the reaction plate in a railway propulsion system by a linear induction motor (LI... In general, it is important to operate the; airgap length uniformly for improving the system efficiency independent of the flatness of the reaction plate in a railway propulsion system by a linear induction motor (LIM). And it is possible to operate the LIM propulsion system efficiently without a change of the LIM capacity through the airgap length control on the sloped rail. So, in this research, the authors introduce an airgap control system to control the airgap length which depends on the flatness of the secondary reaction plate when the LIM is operated, and design a rotary small-scaled LIM and its airgap control system before manufacturing the real system. Then, the authors analyze some characteristics of the LIM (thrust and normal force, input current, efficiency and power factor), and through the LIM control modeling, the authors finally analyze an effect of the airgap-length control of the LIM by the airgap control system. 展开更多
关键词 Airgap control system linear induction motor PROPULSION railway vehicles.
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Nonlinear Control of Induction Motor: A Combination of Nonlinear Observer Design and Input-Output Linearization Technique
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作者 Farid Berrezzek Wafa Bourbia Bachir Bensaker 《Journal of Energy and Power Engineering》 2013年第5期1001-1008,共8页
This paper deals with a nonlinear control strategy of induction motor that combines an input-output linearization control technique and a nonlinear observer design. It is well known that induction motors are the most ... This paper deals with a nonlinear control strategy of induction motor that combines an input-output linearization control technique and a nonlinear observer design. It is well known that induction motors are the most widely used motors in electrical appliances, industrial control and automation. However, it is also known that induction motor control is a complex task that is due to its nonlinear characteristics. Two main features of the proposed approach are worth to be mentioned. Firstly, a nonlinear control is carried out using a nonlinear feedback linearization technique involving non available state variable measurements of the induction motor system. Secondly, a nonlinear observer is designed to estimate these pertinent but unmeasurable state variables of the machine. The circle-criterion approach is performed to compute the observer gain matrices as a solution of LMI (linear matrix inequalities) that ensure the stability conditions, in the sense of Lyapunov, of the estimated state error dynamics of the designed observer. Simulation results are presented to validate the effectiveness of the proposed approach. 展开更多
关键词 induction motor nonlinear control input-output linearization nonlinear observer circle criterion Lyapunov stability.
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Fault detection method with PCA and LDA and its application to induction motor 被引量:3
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作者 JUNG D Y LEE S M +2 位作者 王洪梅 KIM J H LEE S H 《Journal of Central South University》 SCIE EI CAS 2010年第6期1238-1242,共5页
A feature extraction and fusion algorithm was constructed by combining principal component analysis(PCA) and linear discriminant analysis(LDA) to detect a fault state of the induction motor.After yielding a feature ve... A feature extraction and fusion algorithm was constructed by combining principal component analysis(PCA) and linear discriminant analysis(LDA) to detect a fault state of the induction motor.After yielding a feature vector with PCA and LDA from current signal that was measured by an experiment,the reference data were used to produce matching values.In a diagnostic step,two matching values that were obtained by PCA and LDA,respectively,were combined by probability model,and a faulted signal was finally diagnosed.As the proposed diagnosis algorithm brings only merits of PCA and LDA into relief,it shows excellent performance under the noisy environment.The simulation was executed under various noisy conditions in order to demonstrate the suitability of the proposed algorithm and showed more excellent performance than the case just using conventional PCA or LDA. 展开更多
关键词 principal component analysis (PCA) linear discriminant analysis (LDA) induction motor fault diagnosis fusionalgorithm
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Decoupling Control of 5 Degrees of Freedom Bearingless Induction Motors Using α-th Order Inverse System Method 被引量:25
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作者 ZHU Huang-Qiu ZHOU Yang LI Tian-Bo LIU Xian-Xing 《自动化学报》 EI CSCD 北大核心 2007年第3期273-278,共6页
A 5-degrees-of-freedom bearingless induction motor is a multi-variable,nonlinear and strong-coupled system.In order to achieve rotor suspension and operation steadily,it is necessary to realize dynamic decoupling con... A 5-degrees-of-freedom bearingless induction motor is a multi-variable,nonlinear and strong-coupled system.In order to achieve rotor suspension and operation steadily,it is necessary to realize dynamic decoupling control among torque and suspension forces.In the paper,a method based on α-th order inverse system theory is used to study dynamic decoupling control.Firstly,the working principles of a 3-degrees-of-freedom magnetic bearing and a 2-degrees-of-freedom bearinglees induction motor are analyzed, the radial-axial force equations of 3-degrees-of-freedom magnetic bearing,the electromagnetic torque equation and radial force equations of the 2-degrees-of-freedom bearingless induction motor are given,and then the state equations of the 5-degrees-of-freedom bearingless induction motor are set up.Secondly,the feasibility of decoupling control based on dynamic inverse theory is discussed in detail,and the state feedback linearization method is used to decouple and linearize the system.Finally,linear control system techniques are applied to these linearization subsystems to synthesize and simulate.The simulation results have shown that this kind of control strategy can realize dynamic decoupling control among torque and suspension forces of the 5-degrees-of-freedom bearingless induction motor,and that the control system has good dynamic and static performance. 展开更多
关键词 自动化控制 反映线性化 轴承 反馈机制
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高速直线感应电机自学习抗扰控制策略
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作者 徐飞 姜新宇 +2 位作者 李子欣 史黎明 李耀华 《电工技术学报》 北大核心 2025年第6期1771-1783,共13页
高速直线感应电机在跨声速运行时,激波非定常特性引发的抖振现象易导致电机动子速度测量受到强烈不确定扰动,推力控制失稳、跨声速运行失败。该文首先建立了高速直线感应电机自学习数学模型,由历史实验数据学习电机模型参数,依据数学模... 高速直线感应电机在跨声速运行时,激波非定常特性引发的抖振现象易导致电机动子速度测量受到强烈不确定扰动,推力控制失稳、跨声速运行失败。该文首先建立了高速直线感应电机自学习数学模型,由历史实验数据学习电机模型参数,依据数学模型对直线感应电机动子速度进行高精度多步预测。其次由预测速度与传感器量测速度构建滚动预测矩阵,提出基于矩阵列向量变异程度的量测速度可信度计算方法。最后依据预测速度、量测数据及可信度值加权运算,提出不确定扰动下高速直线感应电机自学习抗扰控制策略。仿真结果验证了自学习抗扰控制策略对短时不确定扰动有较好的抑制效果,在跨声速时修正速度与实际速度误差小于0.7%,有效解决了不确定扰动导致的电流分量偏离和推力失稳问题,原理样机实验结果验证了控制策略对不确定扰动抑制的有效性。 展开更多
关键词 不确定扰动 直线感应电机 抗扰控制 自学习模型
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单边直线感应电机三维磁场分析 被引量:1
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作者 陈康 王滢 +1 位作者 李贵 郑洋阳 《微特电机》 2025年第1期19-24,共6页
针对直线感应电机磁场解析中初级绕组线电流密度不连续、相位不准确以及气隙磁场解析精度低的问题,利用初级延拓模型建立了单边直线感应电机初级绕组磁动势三维模型,推导出了包含准确相位角且能充分考虑端部半填充槽的电流线密度连续模... 针对直线感应电机磁场解析中初级绕组线电流密度不连续、相位不准确以及气隙磁场解析精度低的问题,利用初级延拓模型建立了单边直线感应电机初级绕组磁动势三维模型,推导出了包含准确相位角且能充分考虑端部半填充槽的电流线密度连续模型,根据Maxwell方程组,求解了单边直线感应电机气隙区域的矢量磁位方程,得到了气隙磁场三维解析解。利用气隙磁场解析结果,分析了直线感应电机端部效应对电机推力的影响。通过对比三维解析结果与有限元三维模型仿真结果,发现二者具有较高的吻合度,验证了计及初级绕组半填充槽的电流线密度连续模型的正确性,表明基于磁动势三维模型的磁场解析方法能够有效提高单边直线感应电机气隙磁场求解精度和电磁推力计算精度。 展开更多
关键词 单边直线感应电机 磁动势三维模型 三维连续线电流密度 气隙磁场
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定子分段直线感应电机推进系统非线性解耦建模方法
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作者 徐飞 史黎明 +1 位作者 李子欣 李耀华 《电工技术学报》 北大核心 2025年第4期1023-1033,共11页
定子分段直线感应电机在超高速电磁推进领域具有较好的应用前景,然而多相直线感应电机定子与动子耦合程度快速时变、供电切换晶闸管开关电流过零关断、供电电缆阻抗随动子位置变化等非线性特性显著,导致现有建模方法难以准确实时地模拟... 定子分段直线感应电机在超高速电磁推进领域具有较好的应用前景,然而多相直线感应电机定子与动子耦合程度快速时变、供电切换晶闸管开关电流过零关断、供电电缆阻抗随动子位置变化等非线性特性显著,导致现有建模方法难以准确实时地模拟系统电磁暂态过程。该文将直线感应电机系统依据能量转换特性划分为有效转换、无效转换和电源三部分,采用多相电机定子空间矢量解耦建模和虚拟动子磁链方法,实现了晶闸管与直线电机、电机定子与动子之间的解耦,并建立了数学模型。硬件在环实验结果表明,数学模型无迭代实时运算步长低至500ns,原理样机实验结果表明,数学模型与物理实验误差小于7%,验证了数学模型的快速性和准确性,研究成果可为超高速直线感应电机推进系统高性能控制提供建模基础。 展开更多
关键词 分段供电 多相直线感应电机 晶闸管开关 非线性特性 实时模型
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相邻直线电机边端效应及电磁力特性分析
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作者 张敏 骆淑娟 +1 位作者 曹毅 罗世辉 《西南交通大学学报》 北大核心 2025年第4期842-850,共9页
直线感应电机在中低速磁浮列车应用中两两相邻,磁场相互干涉.为探究磁场干涉对相邻电机电磁力特性的影响,首先,基于麦克斯韦方程组建立相邻电机各区域矢量磁位方程,利用边界条件对各区域矢量磁位进行求解;然后,推导得到相邻电机气隙磁... 直线感应电机在中低速磁浮列车应用中两两相邻,磁场相互干涉.为探究磁场干涉对相邻电机电磁力特性的影响,首先,基于麦克斯韦方程组建立相邻电机各区域矢量磁位方程,利用边界条件对各区域矢量磁位进行求解;然后,推导得到相邻电机气隙磁场、牵引力和法向力表达式,分析相邻电机磁场干涉对电机电磁力的影响,并利用有限元仿真对理论模型进行检验;最后,研究电机间距和滑差频率对相邻电机电磁力的影响.研究结果表明:2台电机边端效应引起的行波相互影响,前一台电机(LIM1)受后一台电机(LIM2)影响较小,而LIM2则受LIM1影响较大;LIM2牵引力和法向力均随间距的变化产生波动,间距越小,滑差频率也越小,波动幅度越大,LIM2电磁力受间距影响波动幅度越大;当滑差频率为8 Hz、速度为160 km/h、电流为400 A时,LIM2牵引力相较LIM1最大可增加83%;LIM2法向力最大可减小6.6 kN,将大大减轻悬浮系统的负担. 展开更多
关键词 中低速磁浮 直线感应电机 间距 滑差频率 电磁力
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