• 제목/요약/키워드: Integral action

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TSK퍼지모델로부터 TSK퍼지제어기의 설계 (Design of TSK Fuzzy Controller Based on TSK Fuzzy Model)

  • 강근택;이원창
    • 전자공학회논문지S
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    • 제35S권11호
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    • pp.53-67
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    • 1998
  • 본 논문은 TSK퍼지모델로부터 폐루프의 안정성을 보장하며 그 응답을 자유로이 지정할 수 있는 퍼지제어기와 그 제어기의 설계 방법을 제안한다. 본 논문에서는 퍼지규칙의 선형식이 상수항이 포함되는 affine 방정식으로 된 일반적인 형태의 TSK퍼지모델을 다룬다. 본 논문에서는 제안되는 TSK퍼지제어기는, 선형시스템에서 사용되는 극배치(pole placement)법을 사용하여 설계될 수 있으며, 폐루프의 응답이 원하는 안정된 선형시스템의 거동과 동일하게 되도록 하며, 제어 목표를 바꿀 수 있도록 하며, 적분제어도 가능하게 한다. 시뮬레이션을 통해 퍼지제어기가 유효함을 보인다. 본 논문에서는 연속시스템과 이산시스템 모두에 대해 설명한다.

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축구선수의 킥 동작시 키네시오 테이핑 적용에 따른 하지근활성화 및 동작분석 (Analysis of Low-leg Activation and Movement of Soccer Players during Kicking Action by Applying Kinesiotaping)

  • 김용재;모안나
    • 한국운동역학회지
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    • 제17권2호
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    • pp.131-143
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    • 2007
  • In this study, we are concluded like this : 5 men who are soccer player of P university in B city measure the Electromyography with an angle of motion according to kinesiotaping's application when practicing in-step kick. When exercising in-step kick, the change of realization of muscle load of lower limbs enhence Gastrocnemius Lateralis and Vastus Medialis in the section of backswing, and improve Tibialis Anterior, Vastus Medialis, Rectus Femoris prior to impact after back-swing. Before impact, it mainly impoved Tibialis Anterior, Vastus Medialis, Rectus Femoris. After impact, it generally improved Gastrocnemius Lateralis, Vastus Medialis. Average integral electromyography value, it was such a small difference(; the difference of the value in Tibialis Anterior, Rectus Femoris, Vastus Medialis) that we can't compare case of after taping than before. In Electromyography, in case of after taping was considerably decreased at Gastrocnemius Lateralis, there was statistically significant difference between before and after. It was a little increased, after taping than before at Knee angle. And degree was a little decreased at Ankle angle. But, It's so delicate difference, there was not statistically significant difference between before and after.

포화 요소가 있는 계를 위한 와인드업 방지 보상 방법 (An Anti-Windup Compensation for Systems with Saturation Actuators)

  • 장원욱;박영진
    • 대한기계학회논문집
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    • 제16권7호
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    • pp.1332-1340
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    • 1992
  • 본 연구에서는 제어기에 관심을 갖던 기존의 방법에서 탈피해서 포화요소에 촛점을 맞추어 와인드업 현상을 해결하는 방법을 제시하고자 한다. 이 방법은 단입 출력 시스템에서는 역계산방법(back calculation method)과 동일하나 제어기와 보상기 를 분리하여 설계한 후 보상기를 각각의 엑추에이터 앞에 설치함으로써 다입 출력 시 스템에 쉽게 적용될 수 있다는 점에서 새로운 제안이라 할 수 있다. 또한 제어기를 바꾸지 않고도 보상기만을 추가로 설치하여 와인드업을 방지할 수 있으므로 이미 설치 된 시스템에의 적용이 용이함도 특기할 만하다.

최대구매 제한을 갖는 비선형 생산분배계의 제어 (Control of nonlinear production-distribution process with limited decision policy)

  • 정상화;정상표;오용훈
    • 한국정밀공학회지
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    • 제14권3호
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    • pp.156-165
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    • 1997
  • In the practical control systems, the dynamic range of actuatiors is limited(or saturated) when actuators are driven by sufficiently large signals. This gives rise to a nonlinearity as a result of actuator saturation. For example, the upper limit is imposed on productive capability by available factory space and capital equipment. Other examples of those kinds of actuator saturations are a maximum torque of the actua- ting motors and a throttle position in an aircraft speed control A saturating actuator may lead not only to a large overshoot during start-up and shut-down, but also to deterioration of the performance due to the uncertainties. That is, the speed of response is decreased and, possibly, the system output may not follow the lalrge reference inputs. The large-overshoot may be accompanied by rest wind-up(or called by integra- tor wind-up) which comes from controllers with integral action in saturation operation regions. Eventually, as the overshoot increases, the system has a limit cycle or becomes oscillatorily unstable. Due to these cir- cumstances, many studies are focused on the stability and robustness of the nonlinear systems with satu- rating actuator in the time-domain as well as in the frequency-domain.

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탄성매니퓰레이터의 고성능 제어기 설계에 관한 연구 (A Study on High Performance Controller Design of Elastic Maniplator)

  • 이지우;한성현;이만형
    • 한국정밀공학회지
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    • 제9권3호
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    • pp.73-82
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    • 1992
  • An industrial robot, installed real manufacturing processes an element of the system autmation, can be considered as an uncertain system due to dynamic uncertainties in inertial parameters and varying payloads. Most difficuties in controlling a robot manipulator are caused by the fact that the dynamic equations describing the motions of the manipulator are inherently nonlinear and heavily coupled effects between joints and associated links. Existing robot conrol systems have constant predefined gains and do not cover the complex dynamic interactions between manipulator joints. As a result, the manipulator is severly limited in range of application, speed of operation and variation of payload. The proposed controller is operated by adjusting its gains based on the response of the manipulator in such a way that the manipulator closely matches the reference model trajectories defined by the desinger. The proposed manipulator studied has two loops, an inner loop of model reference adaptive controller and an outer loop of state feedback controller with integral action to guarantee the stability of the adaptive scheme. This adaptation algorithm is based on the hyperstailiy approach with an improved Lyapunov function. The coupling among joints and the nonlinearity in the dynamic equation are explicitly considered. The designed manipulator controller shows good tracking performance in practical working environment, various load variations and parameter uncertainties.

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원추형 자기 베어링 지지 무마찰 구동장치의 위치제어 (Position control of the frictionless positioning device suspended by cone-shaped active magnetic bearings)

  • 정호섭;이종원
    • 제어로봇시스템학회논문지
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    • 제2권3호
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    • pp.181-187
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    • 1996
  • A frictionless positioning device using cone-shaped active magnetic bearings(AMBs) is developed, which is driven by a brushless DC motor equipped with resolver. The cone-shaped AMB feature that the structure is simple and yet the five d.o.f. rotor motion is controlled by four magnet pairs. A linearized dynamic model, which accounts for the relationship between input voltage and output current in the cone-shaped magnet, is developed and the azimuth motion of the frictionless positioning device is modeled as the second order system. The feedback controller is designed by using linear quadratic regulator with integral action optimal control law so that the cone-shaped AMB system is stabilized and the frictionless positioning device gets the zero steady state. It is observed that the linearized dynamic model is adequate and the frictionless positioning device can achieve the tracking accuracy within the sensor resolution.

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Geomechanical analysis of elastic parameters of the solid core of the Earth

  • Guliyev, Hatam H.
    • Geomechanics and Engineering
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    • 제14권1호
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    • pp.19-27
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    • 2018
  • It follows from the basic principles of mechanics of deformable solids relating to the strength, stability and propagation of elastic waves that the Earth's inner core cannot exist in the form of a spherical structure in the assumed thermobaric conditions and calculation values of physico-mechanical parameters. Pressure level reaches a value that is significantly greater than the theoretical limit of medium strength in the model approximations at the surface of the sphere of the inner core. On the other hand, equilibrium state of the sphere is unstable on the geometric forming at much lower loads under the influence of the "dead" surface loads. In case of the action of "follower" loads, the assumed pressure value on the surface of the sphere is comparable with the value of the critical load of "internal" instability. In these cases, due to the instability of the equilibrium state, propagation of homogeneous deformations becomes uneven in the sphere. Moreover, the elastic waves with actual velocity cannot propagate in such conditions in solid medium. Violation of these fundamental conditions of mechanics required in determining the physical and mechanical properties of the medium should be taken into account in the integrated interpretations of seismic and laboratory (experimental) data. In this case, application of the linear theory of elasticity and elastic waves does not ensure the reliability of results on the structure and composition of the Earth's core despite compliance with the required integral conditions on the mass, moment of inertia and natural oscillations of the Earth.

현대 패션 밈(meme)에 관한 사례연구 (A case study on the contemporary fashion meme)

  • 김고운
    • 복식문화연구
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    • 제28권3호
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    • pp.330-343
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    • 2020
  • This study defines the concept of the fashion meme, which has recently emerged as a fashion trend, influential fashion keyword. After analyzing the concepts and characteristics of traditional memes from prior studies, examples of fashion memes were collected from online community and social network services, while a literature study and case study analysis were conducted in parallel drawing on related articles and journals. Modern fashion memes refer to fashion-related symbols and fashion images that are spread online by word-of-mouth, together with fashion styles and items that spread as a result of being worn. Fashion memes in cyberspace are mainly spread through social network or message services, and sometimes combine text, images, videos, hashtags, and emoticons. Fashion memes are a type of collective action of the people in response to social problems in the world, and often involve humorous antics, satire, shock, and eccentricity. Shared fashion memes reflect the expression of personality expression and fun, and at the same time are used as an expression of designer and brand creativity and are integral to marketing. Fashion memes are classified into four types, based on two central axes as follows: non-commercial/commercial and anti-fashion/fashion-friendly. Unlike traditional memes, Internet-based fashion memes emphasize elements of transformation through creativity as well as imitation, which has become a persisting contemporary trend beyond temporary phenomena.

PID 제어기를 이용한 회전전동장치의 동특성에 관한 연구 (A Study on Dynamic Characteristics of Rotating Transmission Using PID Control)

  • 김재경;김종태;김택현
    • 한국공작기계학회논문집
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    • 제14권5호
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    • pp.41-48
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    • 2005
  • The Rotating transmission is made up of belts, mass disks and gears. This transmission is controlled electro-mechanically by the motor and operation program. The control strategy of the system can be to change belts' stiffness and the masses of mass disk and gear. This system can be modeled as a rigid body, and also finds broad application in such diverse fields as machine tools, the cruise control system In automobiles, and control in the attitude and gimbals of spacecraft. This Transmission proves the necessity and effect of a closed loop control. The study of the Rotating Transmission excited by its base motion is able not only to predict the rotational performance, but to obtain the fundamental data for vibration isolation. In this research, we compared the response characteristics of the two controllers by means of the experiments on PD controller and PID controller added on integral action. Furthermore, we studied the response abilities such as steady state error, overshoot, and ect. and the response velocities such as rising time, settling time, and ect. in the rotating transmission.

Trajectory tracking control of underactuated USV based on modified backstepping approach

  • Dong, Zaopeng;Wan, Lei;Li, Yueming;Liu, Tao;Zhang, Guocheng
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제7권5호
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    • pp.817-832
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    • 2015
  • This paper presents a state feedback based backstepping control algorithm to address the trajectory tracking problem of an underactuated Unmanned Surface Vessel (USV) in the horizontal plane. A nonlinear three Degree of Freedom (DOF) underactuated dynamic model for USV is considered, and trajectory tracking controller that can track both curve trajectory and straight line trajectory with high accuracy is designed as the well known Persistent Exciting (PE) conditions of yaw velocity is completely relaxed in our study. The proposed controller has further been enriched by incorporating an integral action additionally for enhancing the steady state performance and control precision of the USV trajectory tracking control system. Global stability of the overall system is proved by Lyapunov theory and Barbalat's Lemma, and then simulation experiments are carried out to demonstrate the effectiveness of the controller designed.