• 제목/요약/키워드: Controller gain tuning

검색결과 208건 처리시간 0.021초

유가식 생물반응기에서의 용존산소농도 및 비성장속도의 제어 (Control of dissolved Oxygen Concentration and Specific Growth Rate in Fed-batch Fermentation)

  • 김창겸;이태호;이승철;장용근;장호남
    • 한국미생물·생명공학회지
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    • 제21권4호
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    • pp.354-365
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    • 1993
  • A novel control method with automatic tuning of PID controller parameters has been developed for efficient regulation of dissolved oxygen concentration in fed-batch fermentations of Escherichia coli. Agitation speed and oxygen partial pressure in the inlet gas stream were chosen to be the manipulated variables. A heuristic reasoning allowed improved tuning decisions from the supervision of control performance indices and it coule obviate the needs for process assumptions or disturbance patterns. The control input consisted of feedback and feedforword parts. The feedback part was determined by PID control and the feedforward part is determined from the feed rate. The proportional gain was updated on-line by a set of heuristics rules based on the supervision of three performance indices. These indices were output error covariance, the average value of output error, and input covariance, which were calculated on-line using a moving window. The integral and derivative time constants were determined from the period of output response. The specific growth rate was maintained at a low level to avoid acetic acid accumulation and thus to achieve a high cell density. The specific growthe rate was estimated from the carbon dioxide evolution rate. In fed-batch fermentation, the simutaneous control of dissolved oxygen concentration (at 0.2; fraction of saturated value) and specific growth rate (at 0.25$hr^{-1}$) was satisfactory for the entire culture period in spite of the changes in the feed rate and the switching of control input.

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선형 추진 BLDC 모터에 대한 파라미터 추정 기법을 이용하는 오토 튜닝(Auto Tuning) PI 제어기 설계 (The Design of an Auto Tuning PI Controller using a Parameter Estimation Method for the Linear BLDC Motor)

  • 차영범;송도호;구본민;박무열;김진애;최중경
    • 한국정보통신학회논문지
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    • 제10권4호
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    • pp.659-666
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    • 2006
  • 서보 모터는 컴퓨터와 센서로부터 오는 지령에 대해 정밀한 모션제어 즉, 정확한 속도조절과 위치 잡기를 수행함으로써 자동화 시스템에서 중요한 부분으로 사용된다. 특히, 선형추진 BLDC모터는 볼스크류, 타이밍 벨트, 랙/피니온과 같은 마찰 유도 전달 메카니즘들과 연결을 갖는 회전식 서보모터들에 비해 다양한 장점들을 갖는다. 본 논문은 정현파 구동형 선형 추진 BLDC모터의 동특성과 출력들로부터 얻어지는 정보를 이용하여 미지의 전동기 계통 파라미터들을 추정하는 방식을 제안한다. 추정된 파라미터들은 제어기와 외란 관측기의 이득을 조절하는데 사용될 수 있다. 이러한 목적을 이루기 위해 고성능의 디지털신호처리프로세서로 계자기준제어(FOC)기법을 구현하기 위해 설계된 TMS320F240을 선형 BLDC 서보 전동기의 제어기로서 사용한다. 이 서보전동기 응용 전용의 DSP는 A/D Converter와 PWM 발생부, 다수의 IO Port를 내장하고 있어 서보모터 제어기에 중요한 역할을 담당하게 된다. 이 선형 BLDC 서보 전동기 시스템은 또한 IPM 구동기와 홀센서 타입의 전류센서모듈 그리고 게이트 구동 신호와 고장 신호들의 전기적 절연을 위한 광결합 모듈을 포함한다.

능동제어가 가능한 선미 인터셉터가 부착된 활주선형 선박의 시스템 식별과 자세 제어에 관한 연구 (System Identification and Pitch Control of a Planing Hull Ship with a Controllable Stern Intercepter)

  • 최후재;박종용;김동진;김선영;이주호;안진형;김낙완
    • 대한조선학회논문집
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    • 제55권5호
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    • pp.401-414
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    • 2018
  • Planing hull type ships are often equipped with interceptor or trim tab to improve the excessive trim angle which leads to poor resistance and sea keeping performances. The purpose of this study is to design a controller to control the attitude of the ship by controllable stern interceptor and validate the effectiveness of the attitude control by the towing tank test. Embedded controller, servo motor and controllable stern interceptor system were equipped with planing hull type model ship. Prior to designing the control algorithm, a model test was performed to identify the system dynamic model of the planing hull type ship including the stern interceptor. The matrix components of model were optimized by Genetic Algorithm. Using the identified model, PID controller which is a classical controller and sliding mode controller which is a nonlinear robust controller were designed. Gain tuning of the controllers and running simulation was conducted before the towing tank test. Inserting the designed control algorithm into the embedded controller of the model ship, the effectiveness of the active control of the stern interceptor was validated by towing tank test. In still water test with small disturbance, the sliding mode controller showed better performance of canceling the disturbance and the steady-state control performance than the PID controller.

로봇 매니플레이터의 실시간 특이점 회피를 위한 작업 재구성법: 동적 작업 우선도에 기초한 해석 (Task Reconstruction Method for Real-Time Singularity Avoidance for Robotic Manipulators : Dynamic Task Priority Based Analysis)

  • 김진현;최영진
    • 제어로봇시스템학회논문지
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    • 제10권10호
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    • pp.855-868
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    • 2004
  • There are several types of singularities in controlling robotic manipulators: kinematic singularity, algorithmic singularity, semi-kinematic singularity, semi-algorithmic singularity, and representation singularity. The kinematic and algorithmic singularities have been investigated intensively because they are not predictable or difficult to avoid. The problem with these singularities is an unnecessary performance reduction in non-singular region and the difficulty in performance tuning. Tn this paper, we propose a method of avoiding kinematic and algorithmic singularities by applying a task reconstruction approach while maximizing the task performance by calculating singularity measures. The proposed method is implemented by removing the component approaching the singularity calculated by using singularity measure in real time. The outstanding feature of the proposed task reconstruction method (TR-method) is that it is based on a local task reconstruction as opposed to the local joint reconstruction of many other approaches. And, this method has dynamic task priority assignment feature which ensures the system stability under singular regions owing to the change of task priority. The TR-method enables us to increase the task controller gain to improve the task performance whereas this increase can destabilize the system for the conventional algorithms in real experiments. In addition, the physical meaning of tuning parameters is very straightforward. Hence, we can maximize task performance even near the singular region while simultaneously obtaining the singularity-free motion. The advantage of the proposed method is experimentally tested by using the 7-dof spatial manipulator, and the result shows that the new method improves the performance several times over the existing algorithms.

비선형 불확실성을 갖는 내연기관의 강인한 토크제어 (Robust Torque Control for an Internal Combustion Engine with Nonlinear Uncertainty)

  • 김영복;김준효
    • 동력기계공학회지
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    • 제13권6호
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    • pp.43-50
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    • 2009
  • If an internal combustion engine is operated by consolidated control, the minimum fuel consumption is achieved satisfying the demanded objectives. For this, it is necessary that the engine is operated on the ideal operating line which satisfies minimum fuel consumption. In this context of view, there are many tries to achieve given object. However, the parameter in the internal combustion engines are variable and depend on the operating points. Therefore, it is necessary to cope with the uncertainties such that the optimal operating may be possible. From this point of view, this paper gives a controller design method and a robust stability condition for engine torque control which satisfies the given control performance and robust stability in the presence of physical parameter perturbation. Exactly, the present paper considers a robust stability of this 2DOF servosystem with nonlinear type uncertainty in the engine system, and a robust stability condition for the servosystem is introduced. This result guarantees that if the plant uncertainty is in the permissible set defined by the given condition then a gain tuning can be carried out to suppress the influence of the plant uncertainties.

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Virtual Instrumentation 플랫폼 기반 무인 자율 로터 항법시스템 개발 및 비행시험 (Development and Flight Test of Unmanned Autonomous Rotor Navigation System Based on Virtual Instrumentation Platform)

  • 이병진;박상준;이승준;김창주;이영재;성상경
    • 제어로봇시스템학회논문지
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    • 제17권8호
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    • pp.833-842
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    • 2011
  • The objectives of this research are development of guidance, navigation and control system for RUAV on virtual instrumentation and real flight test. For this research, the system is divided to DAQ (data acquisition) section, actuator section and controller section. And the hardware and software on each sections are realized on LabVIEW base. Waypoint guidance and control of auto flight are realized using PID gain tuning and waypoint vector tracking guidance algorism. For safe flight test, auto/manual switching module isolated from FCS (Flight Control System) is developed. By using the switch module, swift mode change was achieved during emergency flight case. Consequently, a meter level error of flight performance is achieved.

A Nonlinear Sliding Mode Controller for IPMSM Drives with an Adaptive Gain Tuning Rule

  • Jung, Jin-Woo;Dang, Dong Quang;Vu, Nga Thi-Thuy;Justo, Jackson John;Do, Ton Duc;Choi, Han Ho;Kim, Tae Heoung
    • Journal of Power Electronics
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    • 제15권3호
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    • pp.753-762
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    • 2015
  • This paper presents a nonlinear sliding mode control (SMC) scheme with a variable damping ratio for interior permanent magnet synchronous motors (IPMSMs). First, a nonlinear sliding surface whose parameters change continuously with time is designed. Actually, the proposed SMC has the ability to reduce the settling time without an overshoot by giving a low damping ratio at the initial time and a high damping ratio as the output reaches the desired setpoint. At the same time, it enables a fast convergence in finite time and eliminates the singularity problem with the upper bound of an uncertain term, which cannot be measured in practice, by using a simple adaptation law. To improve the efficiency of a system in the constant torque region, the control system incorporates the maximum torque per ampere (MTPA) algorithm. The stability of the nonlinear sliding surface is guaranteed by Lyapunov stability theory. Moreover, a simple sliding mode observer is used to estimate the load torque and system uncertainties. The effectiveness of the proposed nonlinear SMC scheme is verified using comparative experimental results of the linear SMC scheme when the speed reference and load torque change under system uncertainties. From these experimental results, the proposed nonlinear SMC method reveals a faster transient response, smaller steady-state speed error, and less sensitivity to system uncertainties than the linear SMC method.

집중소자를 이용하여 특성 조절이 가능한 소형 역-F 안테나 (A small Inverted-F Antenna with adjustable characteristics using lumped elements)

  • 유진하;도상인;이영순
    • 한국항행학회논문지
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    • 제17권6호
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    • pp.646-651
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    • 2013
  • 본 논문에서는 집중소자인 캐패시터 및 저항을 사용하여 특성조절이 가능한 소형 역-F 안테나를 제안하였다. 캐패시터는 안테나 크기 및 공진주파수의 조절을 위해 안테나 종단과 접지면 사이에 삽입된다. 반면에 $0{\Omega}$ 저항은 접지면과 단락되는 선로를 대체하여 구현한 것으로써, 단락점의 위치 이동은 안테나의 입력임피던스를 변화시킬 수 있다. 따라서 구조의 재설계 없이도 적절한 캐패시터 및 단락점 위치 선택으로 최적의 안테나 특성을 얻을 수 있다. 이와 같은 본 논문의 타당성 검증을 위하여 2.4 GHz 대역용 안테나를 설계 및 제작하여 지그비 무선 리모컨의 한 제품에 적용하였다. 적용된 안테나의 크기는 $8.5{\times}4.5mm^2$이며 재설계 없이도 대역폭 150 MHz 및 이득 2 dBi의 측정결과를 얻을 수 있다.