• 제목/요약/키워드: PID gain

검색결과 298건 처리시간 0.023초

Gain Tuning of a Fuzzy Logic Controller Superior to PD Controllers in Motor Position Control

  • Kim, Young-Real
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제14권3호
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    • pp.188-199
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    • 2014
  • Although the fuzzy logic controller is superior to the proportional integral derivative (PID) controller in motor control, the gain tuning of the fuzzy logic controller is more complicated than that of the PID controller. Using mathematical analysis of the proportional derivative (PD) and fuzzy logic controller, this study proposed a design method of a fuzzy logic controller that has the same characteristics as the PD controller in the beginning. Then a design method of a fuzzy logic controller was proposed that has superior performance to the PD controller. This fuzzy logic controller was designed by changing the envelope of the input of the of the fuzzy logic controller to nonlinear, because the fuzzy logic controller has more degree of freedom to select the control gain than the PD controller. By designing the fuzzy logic controller using the proposed method, it simplified the design of fuzzy logic controller, and it simplified the comparison of these two controllers.

드릴 공정시 절삭 토크 제어 제 1 편 : 절삭 토크 제어기의 설계 (Cutting Torque Control in Drilling Part 1 : Design of a Cutting Torque Controller)

  • 오영탁;권원태;주종남
    • 한국정밀공학회지
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    • 제18권8호
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    • pp.96-106
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    • 2001
  • As the drilling depth increases, the cutting torque increases and fluctuates, which can lead to the machine tool vibration, severe tool wear, and catastrophic tool breakage. Hence, cutting torque control is very important to improve productivity in drilling. In this paper, a PID controller was designed to control the drilling torque. The plant including the feed drive system, cutting process and spindle drive system was modeled for controller design. The Ziegler-Nichols method was used to determine the controller gain and control action times and the root locus plot was used to tune the controller gain for a certain cutting condition. Also, suggested was a simple method to obtain the tuned controller gain for an arbitrary cutting condition not using the Ziegler-Nichols method and the root locus plot. The performance of the designed controller and the effect of controller gain tuning were verified from experiments.

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입제 비료 변량 살포 제어시스템의 분석 및 설계 (Design and Analysis of a Control System for Variable-Rate Application of Granular Fertilizers)

  • 김유한;이중용;김영주;유지훈;류관희
    • Journal of Biosystems Engineering
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    • 제31권3호
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    • pp.203-208
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    • 2006
  • This study was conducted to improve the control performance of a current variable-rate controller for granular fertilizers. Simulation model was developed. Optimized proportional, integral and derivative gains were determined by simulation model using 2nd order PID gain learning algorithm, and these control gains were evaluated through the field tests. Important results of this study are as follows; 1. Principles of pre-existing variable-rate application of granular fertilizers were investigated. 2. Simulation model of a PID controller that could simulate the control system was developed by using Matlab/Simulink program. The program was to determine PID control coefficients through the simulation model and 2nd order PID gain learning algorithm. 3. PID control coefficients obtained from the simulation were applied to the developed model. When the step input was given, Maximum overshoot were 1.96%, rise time were 0.05 sec, settling time were 0.06 sec and steady state error were 0.21 % respectively. 4. The simulation model was verified through field tests. The errors of maximum overshoot were 10%, rise time were 0.11 sec, settling time were 0.40 sec and steady state error were 8% because of loads and noises. Rise time was decreased to one third of that of the pre-existing system. 5. If the speed of a fertilizing machine is $0.3{\sim}0.6\;m/s$ and the maximum rotation speed of a discharging roller is 64 rpm, rise time would be 0.26 sec and fertilizing machine would cover the distance of $0.07{\sim}0.15\;m$ with settling time of 0.4 sec, fertilizing machine would cover the distance of $0.12{\sim}0.24\;m$.

이득 설계가 간단한 선형전동기 2자유도 PID 위치제어기 구현 (Implementation of the two-degree-of freedom PID Position Controller for Linear Motor Drive with Easy Gain Adjustment)

  • 하홍곤;이창호
    • 융합신호처리학회논문지
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    • 제8권2호
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    • pp.124-129
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    • 2007
  • 최근, 반도체장비, 공구이송장비 그리고 CNC같은 여러 산업분야에 선형기계의 응용이 크게 증가하고 있다. 그러나 선형전동기는 진동특성을 가지고 있다. 그러므로 이러한 응용분야에서 정상 및 과도응답상태에서 고성능 위치제어가 필요하게 된다. 본 논문에서 간단하면서도 강력한 위치제어법을 2자유도 PID제어기를 이용하여 제안하였다. 이 기법은 과도현상없이 선형기계를 구동할 수 있는 잇점과 간단한 이득 동조를 할 수 있다. 일반적인 PID 제어기에 비해서 2자유도 제어기를 사용한 선형 전동기의 제어계의 성능 향상이 논의되었다. 그리고 시뮬레이션의 결과로 위치제어계의 응답에서 과도응답과 기동특성의 향상, 그리고 불필요한 진동성분의 제거에 유효함을 확인하였다.

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비선형 시스템 제어를 위한 퍼지 PID 제어기의 설계 및 해석 (Design and Analysis of Fuzzy PID Controller for Control of Nonlinear System)

  • 이철희;김성호
    • 산업기술연구
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    • 제20권B호
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    • pp.155-162
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    • 2000
  • Although Fuzzy Logic Controller(FLC) adopted three terms as input gives better performance, FLC is in general composed of two-term control because of the difficulty in the construction of fuzzy rule base. In this paper, a three-term FLC which is similar to PID control but acts as a nonlinear controller is proposed. To reduce the complexity of the rule base design and to increase efficiency. a simplified fuzzy PID control is induced from a hybrid velocity/position type PID algorithm by sharing a common rule base for both fuzzy PI and fuzzy PD parts. It is simple in structure, easy in implementation, and fast in calculation. The phase plane technique is applied to obtain the rule base for fuzzy two-term control and the resultant rule base is Macvicar-Whelan type. And the membership function is a Gaussian function. The frequency response information is used in tuning of the membership functions. Also a tuning strategy for the scaling factors is proposed based on the relationship between PID gain and the scaling factors. Simulation results show better performance and the effectiveness of the proposed method.

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Ziegler-Nichols를 이용한 실수코딩 유전 알고리즘 기반의 PID 튜닝 (PID Tuning Based on RCGA Using Ziegler-Nichols Method)

  • 박지모;김고은;김진성;박성만;허훈
    • 한국소음진동공학회논문집
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    • 제19권5호
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    • pp.475-481
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    • 2009
  • Real-coded genetic algorithm(RCGA) has better performances than conventional genetic algorithm about dealing with a large domain, the precision and the constrain problem. Also the RCGA has advantage of operation time because it doesn't have to following about decoding operation. In this paper the ranges of PID gains are limited based on Ziegler-Nichols method to consider a long operation time problem that is the main problem of genetic algorithm. Result shows proposed method represents better performance without ignored about result of ZN tuning method and reduces the calculation time.

Simple Fuzzy PID Controllers for DC-DC Converters

  • Seo, K.W.;Choi, Han-Ho
    • Journal of Electrical Engineering and Technology
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    • 제7권5호
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    • pp.724-729
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    • 2012
  • A fuzzy PID controller design method is proposed for precise robust control of DC-DC buck converters. The PID parameters are determined reflecting on the common control engineering knowledge that transient performances can be improved if the P and I gains are big and the D gain is small at the beginning. Different from the previous fuzzy control design methods, the proposed method requires no defuzzification module and the global stability of the proposed fuzzy control system can be guaranteed. The proposed fuzzy PID controller is implemented by using a low-cost 8-bit microcontroller, and simulation and experimental results are given to demonstrate the effectiveness of the proposed method.

PID control with parameter scheduling using fuzzy logic

  • Kwak, Jae-Hyuck;Jeon, Gi-Joon
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1994년도 Proceedings of the Korea Automatic Control Conference, 9th (KACC) ; Taejeon, Korea; 17-20 Oct. 1994
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    • pp.449-454
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    • 1994
  • This paper describes new PID control methods based on the fuzzy logic. PID gains are retuned after evaluating control performances of transient responses in terms of performance features. The retuning procedure is based on fuzzy rules and reasoning accumulated from the knowledge of experts on PID gain scheduling. For the case that the retuned PID gains result in worse CLDR (characteristics of load disturbance rejection) than the initial gains, an on-line tuning scheme of the set-point weighting parameter is, proposed. This is based on the fact that the set-point weighting method efficiently reduce either overshoot or undershoot without any degradation of CLDR. The set-point weighting parameter is adjusted at each sampling instant by the fuzzy rules and reasoning. As a result, better control performances were achived in comparison with die controllers tuned by the Z-N (Ziegler-Nichols) parameter tuning formula or by the fixed set-point weighting parameter.

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전력계통 주파수 제어를 위한 최적 PID 제어기 적용 (Application of Optimal PID Controller for the Frequency Control of Power Systems)

  • 김해재;왕용필;조금식;정동일;정형환
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1992년도 하계학술대회 논문집 A
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    • pp.113-117
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    • 1992
  • This paper is discribed to the application of PID controller for the frequency control of power systems. The proposed optimal PID controller is designed to obtain gain Parameters of P,I,D's coefficients according to optimization technique using the relatively ingeneous simplex method. The PID controller which is applied to one area, tie-line two area with(or without) exciter is showed good performance rather than that of optimal Pl controllor.

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FPGA를 이용한 DC Servo Motor의 속도제어 (Speed Control of DC Servo Motor using FPGA)

  • 박인수;서용원;박광현
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2009년도 정보 및 제어 심포지움 논문집
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    • pp.313-315
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    • 2009
  • In this thesis, A methodology of system implement for PID controller, PWM logic, HSC logic, Host Communication and external DAC interface are implemented into single FPGA chip is proposed. The implemented system is used to control the speed of DC servo motor. A DATA block transfers set point value(SV) and P, I, D gain parameters to the corresponding Blocks respectively by the Host Communication to Computer. A HSC block generates process value(PV) by a pulse and $90^{\circ}$ shifted pulse from the encoder A PID block makes error(E) signal from the set value and process value and output manufacture value(MV) through the PID controller. In PWM block using the MV from the PID block, drives H-bridge controlling the Motor. Also DAC interface controls the DAC to graph the digital signal such as SV, PV, E, MV in FPGA onto the Oscilloscope.

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