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1.
A robust controller design for a synchronous reluctance drive system is presented. Based on a simplified model of the system, a robust position controller has been derived. A digital signal processor (DSP), TNO-320-C30, is used to implement the control algorithm. Furthermore, all the current, velocity, and position control loops are executed by the DSP. The system, as a result, is very flexible. Although the hardware circuit of the system is very simple, the synchronous reluctance drive system can accurately control a one-axis table. In addition, the system also has good transient response, load disturbance response, and tracking ability. Several experimental results validate the theoretical analysis  相似文献   

2.
This paper presents a novel sensorless synchronous reluctance drive system. Based on the dynamic model of the synchronous reluctance motor (SRM), a new rotor position estimator is proposed. This estimator is only related to the rate change of the stator currents. It is not related to the parameters, speed, voltage, and external load of the motor. As a result, the estimator is simple and robust. Based on the proposed estimator, a sensorless synchronous reluctance drive has been implemented. This drive system can start from standstill and accelerate to a rated speed; the traditional open-loop starting method, therefore, is unnecessary. A digital signal processor, TMS-320-C30, is used to implement the estimating and control algorithms. Experimental results show that the proposed system works well. The adjustable speed range can be from 1 r/min to 1800 r/min. Moreover, by adding the position-loop controller the proposed system can perform as a position control drive as well. Several experimental results validate the theoretical analysis.  相似文献   

3.
A novel controller design for a sensorless permanent magnet synchronous motor (PMSM) drive system, which is fed by a matrix converter is proposed. First, a rotor position estimating technique is proposed to obtain the shaft angle of the motor. Next, a two-degree-of-freedom proportional-integral (PI) controller, including a forward-loop controller and a load compensator, is proposed to improve the performance of the system. The whole drive system has satisfactory transient responses and load disturbance rejection abilities. In addition, the parameters of the PI controller are calculated by using a frequency-domain parameter optimization technique. Only simple algebraic computation is required. Finally, a 32-bit TMS320C40 digital signal processor is used to execute the sensorless technique and all of the control loops, including a current-loop and a speed-loop. Several simulated and experimental results are shown to validate the theoretical analysis.  相似文献   

4.
Robust speed sensorless induction motor drive   总被引:1,自引:0,他引:1  
A speed sensorless induction motor (IM) drive with robust control characteristics is introduced. First, a speed observation system, which is insensitive to the variations of motor parameters, is derived based on the concept of sliding mode. Next, an integral-proportional (IP) speed controller using the estimated speed signal is designed to stabilize the speed loop. Then, to preserve the robust control performance under parameter variations and external load disturbance, an adaptive uncertainty observer with feedforward control is proposed. The adaptive uncertainty observer is implemented to estimate the lump of uncertainty of the controlled plant. To increase the accuracy of the estimated values, the speed observation system is implemented using a digital signal processor (DSP) with a high sampling rate  相似文献   

5.
This paper proposes a neural-network current-regulated switching strategy and an intelligent controller for a matrix converter permanent magnet synchronous motor (PMSM) drive system. By using this new switching strategy, the current harmonics of the system are effectively reduced. In addition, by using the intelligent controller, position control of the drive system can be achieved and an adjustable speed range from 1 r/min to 1500 r/min can be obtained. All the current-loop, speed-loop, and position-loop control algorithms are implemented by a 32-bit TMS320C40 digital signal processor. Several experimental results are shown to validate the theoretical analysis  相似文献   

6.
A nonlinear speed-loop controller for a switched reluctance motor (SRM) drive system is proposed. The details of the controller design and analysis are discussed. In addition, to extend the controllable speed range, the commutating angle of the drive system is suitably adjusted as the motor speed goes beyond base-speed. By using a 32-bit microprocessor, a fully digital drive system including a digital speed-loop controller and a digital current-loop controller is implemented here. The hardware circuit of the drive system is very simple. The system has satisfactory performance in both the pulsewidth modulated (PWM) region and the single pulse region. The adjustable speed range of the system is from 10 r/min to 3000 r/min. In addition, the proposed drive system performs well in tracking ability, load disturbance rejection capability, and robustness. Several experimental results are presented to validate the theoretic analysis.  相似文献   

7.
A new method for controlling a synchronous reluctance drive system using a sliding mode with fuzzy controller design is presented. The fuzzy controller is used to adjust the sliding line of the sliding-mode controller. Using this method, the system has a fast response and a good disturbance rejection capability. In addition, the chattering of the speed is reduced. In this work, the mathematical model of the motor is described first. Then, the design procedures for a high performance drive system using a sliding mode with fuzzy control are explained. Next, the system enhanced by a high performance 32 bit digital signal processor (DSP) and simple hardware circuits is shown. Both the current-loop and speed-loop controllers are executed by the DSP. Finally, some experimental and computer simulation results are presented. The experimental results validate the simulation results  相似文献   

8.
基于扩张状态观测器的DGMSCMG框架伺服系统振动抑制方法   总被引:1,自引:0,他引:1  
李海涛  房建成 《航空学报》2010,31(6):1213-1219
针对带有谐波减速器的双框架磁悬浮控制力矩陀螺(DGMSCMG)框架系统存在较低频率谐振点的问题,提出了一种基于扩张状态观测器(ESO)振动抑制的控制方法。在谐波减速器的输入端和输出端分别设计三阶扩张状态观测器,通过电机及负载端的角位置信号不但能够估计电机和负载的角速率,而且可以比较准确地估计到扭转刚度的非线性变化及外部扰动力矩引起的综合扰动,通过反馈及前馈补偿对综合扰动进行抑制。设计的基于扩张状态观测器的控制器抑制了框架伺服系统的振动、提高了框架的速率输出精度。仿真及实验结果表明了该控制算法是有效的并具有较强的鲁棒性。  相似文献   

9.
帆板控制系统设计   总被引:1,自引:0,他引:1  
该帆板控制系统采用塑料薄膜电位器作为传感器检测角度信号,检测到的角度信号经信号处理电路送12位的串行接口A/D转换器ADS7818进行数字化转换,转化结果由Cortex-M3处理器LM3S615进行处理产生PWM控制信号,该控制信号经功率VMOS驱动电路实现轴流电扇的速度调节,从而实现帆板角度定位闭环控制。通过按键可以实现帆板角度的设定及运行控制,设置六位LED数码管显示实现角度及其它运行状态的显示。经过实际测试该系统完全达到了设计要求的各项指标要求。  相似文献   

10.
This work introduces an adaptive observation system and a robust control system for achieving the favorable decoupling control and high-precision speed tracking property of an induction motor (IM) drive system. First, an adaptive observation system with an inverse rotor time-constant observer is derived on the basis of model reference adaptive system (MRAS) theory to preserve the decoupling control characteristic of an indirect field-oriented IM drive. The adaptive observation system is implemented using a digital signal processor (DSP) with a high sampling rate to make it possible to achieve good dynamics. Moreover, a robust control system is developed based on the principle of computed torque control. In the robust control system, a grey uncertainty predictor is utilized to adapt the lumped uncertainty on line to relax the requirement of the lumped uncertainty in the design of a computed torque speed controller. In addition, the effectiveness of the proposed observation and control systems is verified by simulated and experimental results.  相似文献   

11.
分析了飞机全电刹车系统的基本结构及其工作原理,在此基础上,提出了以先进的数字信号处理器(DSP)为核心的数字防滑刹车控制器,采用速度差加压力偏调(PD+PBM)控制算法,使用ARJNC429总线通信方式进行通信,完成了数字防滑刹车控制器的软硬件设计及系统调试等.试验结果表明,该数字防滑刹车控制器工作稳定可靠,与系统联试...  相似文献   

12.
针对服装产业的发展需求,采用无刷直流电机(BLDCM)驱动技术研制出一种直驱型圆刀裁布机的控制系统,实现了综合性能的提升。设计由单片机及外围电路、功率及驱动电路、霍尔位置检测电路、操控电路和辅助电源组成的数字控制器硬件电路,根据直驱结构的BLDCM特性和整个裁布机的工作特点,分析设计转速闭环控制策略。通过负载测试试验证明,调速性能精确高效;通过堵转测试试验证明,堵转时的过流保护迅速可靠。  相似文献   

13.
A load sharing problem involving the optimal load allocation of divisible loads in a distributed computing system consisting of N processors interconnected through a bus-oriented network is investigated. For a divisible lend, the workload is infinitely divisible so that each fraction of the workload can be distributed and independently computed on each processor. For the first time in divisible load theory, an analysis is provided in the case when the processor speed and the channel speed are time varying due to background jobs submitted to the distributed system with nonnegligible communication delays. A numerical method to calculate the average of the time-varying processor speed and the channel speed and an algorithm to find the optimal allocation of the workload to minimize the total processing finish time are proposed via a deterministic analysis. A stochastic analysis which makes use of Markovian queueing theory is introduced for the case when arrival and departure times of the background jobs are not known  相似文献   

14.
针对永磁同步电机(PMSM)驱动系统中,只利用信号控制器或能量控制器难以兼顾良好的动态特性与较低的能量损耗,提出了基于信号与能量的协调控制策略。首先,利用反步法设计信号控制器,以加快系统的动态响应。然后,从能量的角度出发,利用无源控制中的Euler-Lagrange(EL)模型设计能量控制器,以降低系统稳态运行时的能量损耗。进一步设计协调函数,将信号控制器与能量控制器进行协调,从而构成协调控制器。另外,当负载转矩未知时,设计了负载转矩观测器用来估计负载转矩。在MATLAB/Simulink平台上对所设计的协调控制系统进行了仿真,仿真结果表明,所提出的协调控制策略能够充分结合信号控制器和能量控制器的优点,获得良好的动态和稳态性能,减小PMSM损耗。  相似文献   

15.
This paper presents a new sensorless switched reluctance drive system. The drive system can perform well when the system is operated in the pulse-width modulated (PWM) region. By suitably shaping an induced voltage in an inactive phase which is adjacent to an energized phase of a switched reluctance motor (SRM), the shaft position of the rotor can be easily obtained. As a result, the position sensor can be eliminated. First, the theoretical analysis of the proposed method is presented. By systematic theoretical analysis, a voltage signal which can easily estimate the shaft position of the motor is derived. This signal is only related to the input dc voltage of the converter, and the self and mutual inductances of the motor. Then, a new method to measure the self and mutual inductances of the SRM is proposed. After that, the design for a simple circuit which can synthesize the required voltage signal for rotor position estimation is presented. Next, how a 32-bit microprocessor system is used to execute the position and speed estimation, speed-loop control, and current-commands generation is shown. A closed-loop drive system is thus achieved. Several simulated and experimental results validate the theoretical analysis. A new direction in the design and implementation of a sensorless switched reluctance drive system is presented  相似文献   

16.
针对高性能的无人机微型舵机伺服控制系统,介绍了一种基于PIC单片机的高精度舵机伺服控制器及其测试系统.通过操纵测试软件,计算机发出模拟飞控计算机发送的位置信号,输入以单片机为主控制芯片的舵机控制器,控制功率驱动电路,驱动直流电机,实现伺服控制.控制器软件采用位置、速度和电流三闭环控制算法,利用模糊比例积分微分(PID)控制算法对位置环进行实时调整,同时在速度环与电流环引入积分分离PI控制算法.实验结果表明,控制器具有抗干扰性好、响应速度快、精度高和输出力矩大等特点.  相似文献   

17.
An adaptive velocity controller for a permanent-magnet synchronous motor without using shaft sensor is presented. Two line-to-line voltages and two stator currents are sensed to produce the flux position. The design part is concerned with the formulation of control algorithm for current-regulated pulsewidth modulated inverter and vector control strategy for speed loop. Under the vector control framework, self-tuning, model following, and model referencing adaptive control are applied to design for the speed-loop controllers. The implementational part integrates the control of current and speed loop using microprocessor-based controllers. Experimental case studies that correlate simulation and measurement results are provided. The experimental results validate the theoretical development. A new approach for designing advanced adaptive controller for a sensorless ac drive is provided  相似文献   

18.
电动汽车永磁同步电机滑模低速控制   总被引:1,自引:1,他引:0  
郭栋  吴琦  祁晓野 《航空动力学报》2017,44(10):119-123
针对采用永磁同步电机id=0矢量控制调速的电动汽车电机驱动控制系统,为了改善其抗负载扰动能力,并且当电动汽车处于低速运行时,能够输出大转矩,将滑模变结构控制中的变指数趋近律进行改进,设计了一种滑模速度控制器。为了减小滑模变结构控制的抖振问题,引入饱和函数来代替符号函数,同时考虑到滑模速度控制器中存在滞后问题,将饱和函数与经过积分环节后得到的信号相乘,在提高了响应速度的同时增强系统的抗扰动能力。经过仿真验证,不同负载工况下,滑模速度控制器具有较强的鲁棒性和抗扰动能力,满足电动汽车低速运行工况下输出大转矩的要求。  相似文献   

19.
轴流压气机旋转失速DSP在线控制方法   总被引:1,自引:0,他引:1  
李琳  聂超群 《航空学报》2009,30(5):787-793
针对压气机旋转失速的在线控制新方法进行了实验研究。构造了完整的数字信号处理(DSP)控制方案,并在单级低速轴流压气机实验台上完成了实验验证。在对动态信号进行时域分析、频域分析、滤波及相关性分析的基础上,确定了旋转失速在线控制的整定值,结合叶顶微喷气扩稳方法,在不同相关系数设定的条件下,进行了旋转失速在线反馈控制的实验研究。实验结果显示该DSP控制系统与相关计算方案结合具有有效的控制效果,为压气机流动失稳控制技术发展探索一种新的方式。  相似文献   

20.
飞行模拟转台高精度数字重复控制器的设计   总被引:4,自引:1,他引:3  
从工程的角度讨论了离散重复控制系统的设计,所提出的重复控制方法可保证速度跟踪误差快速收敛为零。在重复控制器中采用了高阶低通滤波器和动态补偿器,改善了跟踪精度,保证了系统的稳定性,减少了周期性扰动误差。将所提出的方法应用于飞行模拟转台伺服系统的速度控制中,仿真结果表明,针对周期指令信号和周期干扰信号可保证较高的跟踪精度和较强的稳定性和鲁棒性。  相似文献   

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