• Title/Summary/Keyword: Temperature Controlled Algorithm

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A Study on the Temperature Controlling of Driving Algorithm for the Electronic Shutter by the Laser Beam (레이저빔에 의한 전자셔터 구동 알고리즘의 온도제어에 관한 연구)

  • Lee, Young-Wook
    • Journal of the Korea Society of Computer and Information
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    • v.10 no.4 s.36
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    • pp.87-92
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    • 2005
  • This study showed the possibility of the medical treatment by thermal feedback as the laser medical treatment had given by design of the digital I/O interfaces of the electronic shutter to control the laser beam and the temperature controlled algorithm. The electronic shutter is economical and that is designed to be automatically controlled within the range of an extent temperature by such development of its driving interfaces and the controlled algorithm of the electronic shutter. The possibility of local therapy for the patients by the treatment of the laser beam within an extent temperature controlled, is proposed by improvement of the problems on the current treatment methods such as radiotherapy, high frequency treatment or medical therapy of drug stuffs which even kill the normal cells.

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Temperature Setpoint Algorithm for the Cooling System of a Tilting Train Main Transformer (틸팅열차 주변압기 냉각시스템의 온도설정알고리즘)

  • Han, Do-Young;Noh, Hee-Jeon;Won, Jae-Young
    • Proceedings of the SAREK Conference
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    • 2008.11a
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    • pp.387-392
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    • 2008
  • In order to improve the efficiency of the main transformer in a tilting train, the optimal operation of a cooling system is necessary. For the development of the optimal control algorithm of a cooling system, the mathematical model of a main transformer cooling system was developed. This includes the dynamic model of a main transformer, an oil pump, an oil cooler and a blower. The system algorithm of a cooling system, which consists of the temperature setpoint algorithm and the temperature control algorithm, was developed. Optimal oil temperatures of the inlet and the outlet of the main transformer were obtained by considering the total electric power consumption of the system. The oil inlet temperature was controlled by the blower and the oil outlet temperature was controlled by the oil pump. A simulation program was developed by using the mathematical model and the system algorithm. Simulation results showed that the system algorithm developed from this study may be effectively used to control the main transformer cooling system in a tilting train.

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A Frequency Model of OCXO for Holdover Mode of DP-PLL (DP-PLL의 Holdover 모드에 대한 OCXO의 주파수 모델)

  • Han, Wook;Hwang, Jin-Kwon;Kim, Yung-Kwon
    • Journal of IKEEE
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    • v.4 no.2 s.7
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    • pp.266-273
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    • 2000
  • A frequency model of an OCXO (Oven Controlled X-tal Oscillator) is suggested to implement a holdover algorithm in a DP-PLL (Digital Processing-Phase Locked Loop) system. This model is presented simply with second order polynomials with respect to temperature and aging of the OCXO. The model parameters are obtained from experimental data by applying the LSM (Least Squared Method). A holdover algorithm is also suggest using the frequency model. The obtained model is verified to simulate the holdover algorithm with experimental phase data due to variation of temperature.

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Design of temperature control system using cool-plate of track equipment (트랙장비용 쿨 플레이트를 이용한 웨이퍼 온도제어 시스템 설계)

  • Choi, Young-Jin;Oh, Byung-Ju
    • Proceedings of the KIEE Conference
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    • 2002.11c
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    • pp.110-113
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    • 2002
  • This paper propose a method for the temperature control using cool-plate in the track equipment. The employed control algorithm is PID control algorithm. The control gains are found using relay auto-tuning algorithm. After that the gains are adjusted manually in trial and error. The control hardware circuit is designed and implemented in the lab. The controlled temperature reached the desired value Within $\pm0.05^{\circ}C$ accuracy.

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A precision temperature control system using one-board micom (One-board micom을 이용한 정밀 온도 제어 시스템)

  • 주해호;조덕현
    • 제어로봇시스템학회:학술대회논문집
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    • 1988.10a
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    • pp.457-461
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    • 1988
  • In this study an one-board micom controlled precision temperature control system has been developed. The digital temperature control system is consisted of an one-board micom as digital controller, a 12-bit A/D and D/A converter, a power amplifier, a NTC thermister, a preamplfier and a heat chamber. An operating control program for the control system was written in Z80 machine language. A Dual-PID predictor control algorithm was proposed. Experments were conducted with different sampling time and limitted error value. As a result, the temperature in a heat chamber can be well controlled within +- 0.2 .deg.C when the sampling time was applied to 10 sec and the limitted error value +- 0.5 .deg.C under the dual-PID predictor control algorithm. By means of one-board micom overall system has been reduced in size and volume, thus the system becomes compact and less expensive.

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Study on the Laser Beam Controlled Driving Algorithm of the Electronic Shutter (레이저빔 제어 전자셔터 구동 알고리즘에 관한 연구)

  • Lee, Young-Wook
    • Proceedings of the Korea Contents Association Conference
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    • 2004.11a
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    • pp.157-161
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    • 2004
  • This study proposed the possibility of the medical cure by thermal feedback as the laser medical treatment had given and by the development of digital I/O interfaces of the electronic shutter to control the laser beam and of the temperature controlled algorithm. The development of the electronic shutter driving such interfaces and its controlled algorithm was designed to be automatically controlled within the range of an extent temperture.

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Optimal Oil Temperature at the Main Transformer Cooling System (주변압기 냉각시스템의 최적오일온도)

  • Han, Do-Young;Won, Jae-Young
    • Proceedings of the SAREK Conference
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    • 2009.06a
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    • pp.955-960
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    • 2009
  • In order to improve the efficiency of the main transformer in a tilting train, the optimal operation of a cooling system is necessary. Mathematical models of a main transformer cooling system were developed. These include models for the main transformer, the oil pump, the oil cooler, and the blower. The optimal oil temperature algorithm was also developed. This consists of the optimal setpoint algorithm and the control algorithm. A simulation program was developed by using mathematical models and the optimal oil temperature algorithm. Simulation results showed that the dynamic behavior of a main transformer cooling system was predicted well by mathematical models and a main transformer cooling system was controlled effectively by the optimal oil temperature algorithm.

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Optimal filter design at the semiconductor gas sensor by using genetic algorithm (유전알고리즘을 이용한 반도체식 가스센서 최적 필터 설계)

  • Kong, Jung-Shik
    • Design & Manufacturing
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    • v.16 no.1
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    • pp.15-20
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    • 2022
  • This paper is about elimination the situation in which gas sensor data becomes inaccurate due to temperature control when a semiconductor gas sensor is driven. Recently, interest in semiconductor gas sensors is high because semiconductor sensors can be driven with small and low power. Although semiconductor-type gas sensors have various advantages, there is a problem that they must operate at high temperatures. First temperature control was configured to adjust the temperature value of the heater mounted on the gas sensor. At that time, in controlling the heater temperature, gas sensor data are fluctuated despite supplying same gas concentration according to the temperature controlled. To resolve this problem, gas and temperature are extracted as a data. And then, a relation function is constructed between gas and temperature data. At this time, it is included low pass filter to get the stable data. In this paper, we can find optimal gain and parameters between gas and temperature data by using genetic algorithm.

The Neural-Fuzzy Control of a Transformer Cooling System

  • Lee, Jong-Yong;Lee, Chul
    • International Journal of Advanced Culture Technology
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    • v.4 no.2
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    • pp.47-56
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    • 2016
  • In transformer cooling systems, oil temperature is controlled through the use of a blower and oil pump. For this paper, set-point algorithms, a reset algorithm and control algorithms of the cooling system were developed by neural networks and fuzzy logics. The oil inlet temperature was set by a $2{\times}2{\times}1$ neural network, and the oil temperature difference was set by a $2{\times}3{\times}1$ neural network. Inputs used for these neural networks were the transformer operating ratio and the air inlet temperature. The inlet set temperature was reset by a fuzzy logic based on the transformer operating ratio and the oil outlet temperature. A blower was used to control the inlet oil temperature while the oil pump was used to control the oil temperature difference by fuzzy logics. In order to analysis the performance of these algorithms, the initial start-up test and the step change test were performed by using the dynamic model of a transformer cooling system. Test results showed that algorithms developed for this study were effective in controlling the oil temperature of a transformer cooling system.

Development of a Fully-Controlled Phytotrons -Temperature and Humidity Control System- (완전제어형(完全制御型) 실험용(實驗用) 작물생육장치(作物生育裝置)의 개발(開發)(I) -온(溫)·습도(濕度) 제어(制御) 시스템-)

  • Lee, K.C.;Ryu, K.H.;Noh, S.H.;Hong, S.H.
    • Journal of Biosystems Engineering
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    • v.17 no.1
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    • pp.55-64
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    • 1992
  • The aim of this study was to develop a phytotron for studying the effects of environmental factors such as temperature and humidity on plant growth. This equipment consists of the growth chamber, and the measurement and control system including control algorithms required for optimum operation. As the first step of the study, a temperature and humidity control system was developed. The results of this study are summarized as follows ; 1. Pt-100 was selected to measure temperature and a linearized op-amp circuit was developed for signal conditioning. 2. Pt-100 wet bulb thermometer based on Asmann's principle was developed to measure relative humidity. 3. Temperature and relative humidity conditions were controlled by ON-OFF and PWM operation using a PID controller. And an autotuning algorithm using the characteristics of step response was developed to determine optimal PID constants which were independent of the size of apparatus and environmental factors. 4. Under the ambient temperature of $20^{\circ}C{\sim}25^{\circ}C$, the temperature was kept within the error of ${\pm}0.3^{\circ}C$ in the range of $10^{\circ}C{\sim}40^{\circ}C$, and the relative humidity was kept within the error of ${\pm}5%$ in the range of ${\pm}50%{\sim}90%$.

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