• 제목/요약/키워드: proportional control valve

검색결과 185건 처리시간 0.025초

외란을 갖는 전기유압 서보시스템의 위치제어 (Position Control of an Electro-hydraulic Servo System with Disturbance)

  • 허준영
    • 드라이브 ㆍ 컨트롤
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    • 제18권3호
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    • pp.1-7
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    • 2021
  • In a hydraulic control system, since a hydraulic cylinder drives a relatively large mass of an object, an external load force acts as a disturbance on the control performance of the system. Additionally, as the hydraulic system is used for a long period, there are disturbances that occur gradually, such as a drop in supply pressure because of abrasion of the pump, oil leakage from a valve, and oil leakage from a cylinder. In this study, a state feedback controller based on a linearization technique is applied. To prevent the performance degradation of the controller from the load disturbance, an Extended Luenberger observer (ELO) is used for the Extended system. The case of using the proportional controller, which is a representative linear controller, and the result of using the controller designed in this study are compared and reviewed through simulation. Also, we propose an experimental gain-setting method for a state feedback controller that can be used at industrial sites, and examine how the stability and control performance of the system changes because of the disturbance inputs through the experimental results.

조수간만의 차를 고려한 새로운 하역 시스템의 능동 제어 (Active Control of a New Cargo Handling System Adapted for Time-Varying Tide)

  • 김형석;정달도;최승복;이재욱
    • 대한조선학회논문집
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    • 제36권2호
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    • pp.61-71
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    • 1999
  • 본 연구에서는 조수간만의 차가 큰 항만에 적합한 새로운 하역 시스템을 제안하였다. 새로운 하역 시스템은 기존의 갑문 이용 방식 대신에 일종의 유압 엘리베이터를 사용함으로써 조수간만의 차에 따라 변하는 선박의 높이로 실시간 제어하여 선적 흑은 하역을 하는 방식이다. 한번에 대량의 컨테이너를 처리하기 위해 컨테이너 팔레트 운송타를 도입함으로써 기존 시스템에 비해 시간당 처리능력을 높일 수 있고, 선적 및 하역의 전 과정을 자동화함으로써 작업 효율을 극대화할 수 있도록 하였다. 새로운 하역 시스템의 개념 입증을 위해 소형 하역 시스템 모델을 설계 제작하였다. 제작된 모델은 컨테이너 팔레트 운송차, 플랫폼과 리프트 칼럼의 복합 구조물, 그리고 전용 운반선으로 구성된다. ER(electro-rheological) 밸브-실린더에 의해 구동되는 플랫폼은 조수간만의 차와 과도에 의해 변하는 선박의 높이를 능동적으로 추적 제어하게 된다. 동적 모델성을 통해 플랫폼의 운동 지배 방정식을 도출하였고, 파도 가진으로 인한 선박의 거동 및 조수간만의 차를 모델링하였다. 선적 및 하역의 자동화와 플랫폼의 정확한 위치 제어를 위해 시퀀스 제어기와 PID(proportional-integral-derivative) 위치 제어기가 연계된 제어 시스템을 구성하였다. 컴퓨터 시뮬레이션과 실험을 통해 제안된 하역 시스템의 유용성을 입증하였다.

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비선형 마찰특성을 고려한 비례제어밸브·유압실린더계의 적응 이산시간 슬라이딩모드 추적제어 (Adaptive Discrete Time Sliding-Mode Tracking Control of a Proportional Control Valve-Hydraulic System in the presence of friction)

  • 유환신;박형배
    • 한국항행학회논문지
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    • 제13권5호
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    • pp.756-762
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    • 2009
  • 비선형 마찰인 유압 작동기의 스틱-슬립 마찰은 정확성과 응답성에 문제가 된다. 그러므로 마찰보상은 다양한 제어알고리즘을 통하여 연구되어 왔다. 적응이산시간 슬라이딩 추종제어기는 유압작동기 내의 비선형 마찰 특성을 보상하기 위하여 적용하였다. 다오판틴 방정식을 기초로 하여 새로운 이산시간 슬라이딩 함수는 마찰과 모델링 오차를 포함하여 제어법칙을 정의하였다. 비선형 파라미터의 추종성을 기초로 슬라이딩 함수와 프로젝션 항수를 이용하여 강인성을 높였다. 시뮬레이션과 실험결과는 좋은 추종성능을 얻었다.

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바닥난방 시스템용 비례식 자동온도조절밸브의 성능해석에 관한 연구 (A Study on the Performance Analysis of Proportional Automatic Thermostatic Valves in Floor Radiant Heating System)

  • 송재엽;안병천;김용기;이태원
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2007년도 동계학술발표대회 논문집
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    • pp.52-57
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    • 2007
  • The control characteristics for radiant panel heating system with automatic thermostatic valves were researched by computer simulation and experiment. The unsteady energy analysis using equivalent R-C circuit method and radiation heat transfer analysis of enclosure analysis method with simple structured rooms was performed. The results of flow rate changes of the simulation study are good fit with the ones of experimental one.

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하이드로 포밍 공정의 동특성 해석 및 시뮬레이션 (Dynamic Modeling and Simulation of a Hydro-forming Process)

  • 이우호;조형석
    • 한국정밀공학회지
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    • 제16권11호
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    • pp.122-132
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    • 1999
  • This study describes a dynamic model of the hydroforming process which is used for precision forming of sheet metals. To help the controller design for the control of the forming pressure needed for this process as well as to investigate the effect of system parameters on the dynamic behavior, dynamic modeling is performed with emphasis on hydraulic servo system which actuates the forming machine. Since the model contains several unknown parameters, these were estimated via a least square parameter identification method. Based upon the identified model, a series of simulations were performed for various operating conditions. The results were compared with those of the experiments to verify the validity of the proposed model. The comparison study shows that the proposed dynamic model can describe dynamic behavior of the forming pressure of the hydroforming process to desirable accuracy.

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Cherepnov 송수기에 대한 배수제어방식의 실험적 특성 (Experimental Characteristic of Drain Control to Cherepnov Water Lifter)

  • 박성천;이강일
    • 한국농공학회지
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    • 제39권6호
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    • pp.67-79
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    • 1997
  • The perpose of this study was to suggest the experimental characteristic of the Cherepnov Water Lifter following the drain mode. The Cherepnov Water Lifter(CWL), which is powered by the potential energy of water, can be set to operate automatically when the water m a tank is drained. In this study, a CWL is constructed in the valve drain controlling mode(VCM) and the siphon drain controlling mode(SCM), and a pressure transducer is installed. It was found that, in the VCM, intake flow volume is proportional to both delivery flow volume and drain flow volume. In the SCM, intake flow volume is proportional to drain flow volume, and the average delivery rate is proportional to both efficiency and the water utilization ratio. Also, in the VCM, the water utilization ratio is 35~49%, efficiency is 62~9O%, average delivery rate is 12.8~81.2$cm^3$/s, and the average drain rate is 14.O~91.5c$cm^3$/s. On the contrary in the SCM, the water utilization ratio is 1.7~38%, efficiency is 3~58%, average delivery rate is 3.1 ~69.2$cm^3$/s, and the average drain rate is shown as 114.5~ 183$cm^3$/s. As a result of the water utilization ratio, efficiency, average delivery rate, and average drain rate are compared, the VCM is found to be superior and the more economical mode. However, the VCM requires manpower and electricity to operate the electronic machinery involved, while the SCM requires no manpower or electricity at all. An economic evaluation of these differences will be necessary in the future. Also, in the SCM, studies to improve water utilization ratio and efficiency, to find the optimum height of the siphon for decreasing the average drain rate, and to determine the radius of curvature of throat have to be conducted in advance, since a large flow rate is drained during the priming action of the siphon.

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양방향 3단 IMV 개발을 위한 시뮬레이션 해석 (Simulation Analysis for the Development of 3 Stage IMV)

  • 허준영
    • 드라이브 ㆍ 컨트롤
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    • 제17권2호
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    • pp.55-62
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    • 2020
  • There are two types of IMV for MCV, the spool type and the poppet type. The spool type is used in the existing excavator MCV and easily meets large-capacity flow conditions, but has a flow force problem which affects the spool control. The poppet type stably blocks the flow and has excellent rapid response. However, the larger the capacity, the larger the diameter of the poppet needed, requiring a strong spring to withstand the oil pressure. In this study, a bi-directional three-stage IMV for MCV that can be used in medium and large hydraulic excavators was proposed. This is a poppet type, enabling bi-directional flow control and resolves the problem of proportional solenoid suction force limitation. To investigate the validity of the proposed valve, the system was mathematically modeled and the static and dynamic characteristics were investigated through the simulation using commercial software. It has been concluded that the reverse flow is possible in a regeneration circuit and that the proposed IMV can be used to perform various excavation modes.

공압 레귤레이터의 공급압력 강하 제어이론에 대한 고찰 (Investigation of Control Theory on Pressure Drop Characteristics of Pneumatic Regulator for Gas Supply)

  • 조남경;정용갑;조인현
    • 한국추진공학회지
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    • 제15권2호
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    • pp.74-83
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    • 2011
  • 발사체 관련 가스공급은 타 분야 가스공급과는 달리 대유량의 가스공급이 요구되며, 가스공급시 공급압력이 감소하여, 유량을 공급하는 동안 요구되는 압력을 만족시키지 못하는 현상이 흔히 발생한다. 공급압력 감소는 레귤레이터의 특성과 밀접하게 연관되어 있다. 본 논문에서는 공압 레귤레이터를 2차측 압력을 일정하게 유지시키는 일종의 제어계로 간주하여 공압 레귤레이터의 공급압력 강하 제어방법을 고찰하였다. 직동식 레귤레이터는 유량공급시 정적 평형 오차가 수반되며, 오차의 분석은 압력오차에 대한 밸브 이동거리의 비로서 정의되는 민감도로서 해석될 수 있음을 제시하였다. 직동식 레귤레이터의 오차는 비례식 및 적산식 제어계의 개념을 도입한 파이롯 레귤레이터의 도입을 통하여 개선될 수 있음을 보였다.

트랙터의 전자유압식(電子油壓式) 히치 제어(制御) 시스템에 관한 연구(硏究)(II) -견인력제어(牽引力制御)- (Electronic-hydraulic Hitch Control System for Agricultural Tractor -Draft Control-)

  • 유수남;류관희;윤여두
    • Journal of Biosystems Engineering
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    • 제14권4호
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    • pp.229-241
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    • 1989
  • The purposes of this study were to develop an electronic-hydraulic draft control system for tractor implements, to investigate the control performance of the system and the possibility of adaptation to the conventional tractor. Experiments were carried out to investigate the responses of the system to the step and sinusoidal inputs in draft control. The effects of control mode, hydraulic flow rate, reference deadband, and proportional constant on control performance of the system were investigated. Moreover, the effects of filtering signals from draft sensor were also investigated. The following conclusions were derived from the study; 1. In draft control, there were hunting problems in controlling the implement without filtering the draft signals. Filtering was performed by a control program of electronic controller and the control performance and stability of the system were improved significantly. 2. For the draft control system operated on on-off control mode, draft was controlled within ${\pm}27-{\pm}55kg_f$ to the reference draft when the hydraulic flow rates were 5-15 l/min. For the draft control system operated on PWM control, draft was controlled within ${\pm}27kg_f$ to the reference draft regardless of hydraulic flow rates. 3. In the frequency responses of the draft control system, control performance on PWM control mode was not better than on on-off control mode because of characteristics of hydraulic valve and drafe sensor. As the hydraulic flow rates increased for the system operated on on-off control mode, the corner frequency of amplitude attenuation increased, but the corner frequency of phase-angle change remained nearly the same. But, the system was unstable beyond the frequency of 3.1 rad/s. 4. The electronic-hydraulic hitch control system developed in this study showed superior control performance, stability and convenience compared to conventional mechanical-hydraulic hitch control system. It is considered to be a superior replacement for the conventional mechanical-hydraulic hitch control system.

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타이어 시뮬레이터를 이용한 능동형 타이어 공기압 제어 시스템 개발 (Development of an Active Tire Pressure Control System Using a Tire Simulator)

  • 이규철;류관희;이중용;홍지향;김혁주;유지훈
    • Journal of Biosystems Engineering
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    • 제35권1호
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    • pp.21-30
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    • 2010
  • This study was performed to develop an active tire pressure control system that can adjust tire pressure to the optimum level according to traveling and working condition of agricultural tractor. For the development of active tire pressure control system, pneumatic supplier, solenoid valve block including pneumatic supply line, infinite rotation type pneumatic supplier with rotary joint unit, tire pressure transceiver module and control algorithm were developed. Also, tire simulator was developed. Using this tire simulator, the feasibility of each part constructing actual system was tested by checking the performance. The average communication success ratio was 98.3% between tire pressure transmitter and receiver module according to the various tire rotational speed and data receipt position of receiver module. The communication performance of the developed transmitter and receiver module was very stable in any condition. The tire pressure control system was accomplished by using the proportional control algorithm in this study. Also tire pressure control performance of developed control system was analyzed by using the tire simulator. As a result of control performance analysis to the developed system, the developed control system took 307 seconds to inflate agricultural tractor's tire from 50 kPa to 180 kPa. In opposite case, it took 210 seconds. Also it was able to control the tire pressure accurately under ${\pm}0.9%$ (FS) in any condition.