• 제목/요약/키워드: 루퍼-장력제어

검색결과 6건 처리시간 0.02초

열간 사상압연기의 장력 연산모델과 루퍼-장력 ILQ 서보 제어 (Tension Modeling and Looper-Tension ILQ Servo Control of Hot Strip Finishing Mills)

  • 황이철;박철재
    • 동력기계공학회지
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    • 제12권1호
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    • pp.72-79
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    • 2008
  • This paper designs a looper-tension controller for mass-flow stabilization in hot strip finishing mills. By Newton's 2nd law and Hooke's law, nonlinear dynamic equations on the looper-tension system are firstly derived, and linearized by a linearization algorithm using a Taylor's series expansion. Moreover, a tension calculation model is obtained from the nonlinear dynamic equations which is called as a soft sensor of strip tension between two neighboring stands. Next, a looper-tension servo controller is designed by an ILQ(Inverse Linear Quadratic optimal control) algorithm, and it is combined with a minimal disturbance observer which to attenuate speed disturbances by AGC and operator interventions, etc.. Finally, it is shown from by a computer simulation that the proposed ILQ controller with a disturbance observer is very effective in stabilizing the strip mass-flow under some disturbances, moreover it has a good command following performance.

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열간압연 연속공정용 전동기 구동시스템의 속도 및 장력제어 (Speed and Tension Control of Motor Drive System in Hot Strip Finishing Mill)

  • 송승호;설승기
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 B
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    • pp.1090-1092
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    • 2000
  • 철강 생산라인 중에서도 핵심적인 열간압연 라인의 연속 사상압연 공정을 소개하고 스탠드간에 위치한 루퍼의 각도 제어와 장력제어의 상호 관계를 설명하였다. 또한 압연용 전동기 속도 제어계 특성의 설계법을 보였다. 이와 같은 연속 압연 공정에서는 철판이 여러 압연기에 동시에 물려있는 상태로 운전되므로 인접한 압연기들의 속도 제어 응답성이 동일한 특성을 갖는 것이 필요하다.

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역최적제어(ILQ)를 이용한 열간압연시스템의 루퍼 장력제어기 설계 및 견실성 연구 (A Study on the Design of a Looper Strip Controller and its Robustness for Hot Strip Mills Using ILQ Control)

  • 황이철;김성배
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집B
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    • pp.93-98
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    • 2001
  • This paper studies on the design of an ILQ(Inverse Linear Quadratic optimal control) looper control system for hot strip mills. The looper which is placed between each stand plays an important role in controlling strip width by regulating strip tension variation generated from the velocity difference of main work rolls. The mathematical model for looper is firstly obtained by Taylor's linearization of nonlinear differential equations, where it is given as a linear and time invariant state-space equation. Secondly, a looper servo controller is designed by ILQ control algorithm, which is an inverse problem of LQ(Linear Quadratic optimal control) control. By tunning control gain arbitration parameters and time constants, it is shown that the ILQ looper servo controller has the performance that makes well to follow desired trajectories of both strip tension and looper angle.

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열간사상압연기의 루퍼시스템의 ILQ 제어기 설계 (Design of an ILQ Looper Controller for Rot Strip Mills)

  • 김성배;황이철
    • 대한기계학회논문집A
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    • 제26권8호
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    • pp.1680-1689
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    • 2002
  • This paper studies on the design of a looper control system for hot strip mill finisher using ILQ(Inverse Linear Quadratic optimal control) control method. The loopers are placed between each rolling stands and looper control plays an important role in regulating strip tension. The strip tension is controlled by raising and lowering the looper and by changing the speed of main work rolls. Firstly, it is shown from a nonlinear dynamic simulation that the strip tension is more influenced by difference of rolling speed than that of the looper angle. Secondly, a servo controller of the looper is designed using ILQ control method of which the characteristics and algorithms are simply introduced. Finally, the performances of the ILQ servo controller are compared with those of the LQI servo controller from computer simulation. In result, it is shown that the proposed ILQ servo controller has the better performances and robustness far parameter perturbations and disturbances than those of LQI controller.

열연 루퍼시스템의 퍼지 장력제어 (A Fuzzy Tension Control Method for the Coupled Looper System at the Hot Rolling Process)

  • 허윤기
    • 제어로봇시스템학회논문지
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    • 제16권10호
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    • pp.1006-1012
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    • 2010
  • The hot rolling process ranks the highest position for production in steel making process. The hot strip manufacturing processes consist of the reheating furnace, roughing and finishing mill and coiler. The reheating furnace heats the slab. The roughing and finishing mill produce the hot strip from slab. The hot strip quality mainly depends on finishing mill, which consists of 4-high 7 stands. The looper is installed between stands and is used for controlling the strip tension by the looper angle for better material flow. It is difficult to control the strip tension with the coupled looper system from interaction between the looper angle and strip tension. Too much deviation of strip tension severely affects the poor width quality of the hot strip. It is important to control simultaneously both the looper angle and strip tension with each of their target values. This paper proposes the fuzzy tension control, which is developed to minimize the width deviation of the hot strip by maintaining the proper strip tension between stands and to achieve the stable operation of the coupled looper system. The fuzzy tension control performance is compared with the conventional PID control by experimental results.

열간압연공정의 스트립 선미단부 루퍼-장력 제어 (Looper-Tension Control of Strip Top-Tail Parts for Hot Rolling Mills)

  • 황이철
    • 동력기계공학회지
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    • 제19권4호
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    • pp.24-29
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    • 2015
  • This paper designs a looper-tension controller for strip top-tail parts in hot strip finishing mills. A three-degree linear model of the looper-tension system is derived by a Taylor's linearization method, where the actuator's dynamics are ignored because of their fast responses. A feedforward shaping controller for the strip top part and a feedforward model reference controller for the strip tail part are respectively designed, they are combined with an ILQ(Inverse Linear Quadratic optimal control) feedback controller for the strip middle part. It is shown from by a computer simulation that the proposed controller is very effective to the strip top-tail parts including the middle part.