• 제목/요약/키워드: Smart controller

검색결과 514건 처리시간 0.029초

수정 LQG 제어기를 이용한 지능 구조물의 능동진동제어 (Active Vibration Suppression of Smart Structures using a Modified LQG Controller)

  • 신태식;곽문규
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1998년도 춘계학술대회논문집; 용평리조트 타워콘도, 21-22 May 1998
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    • pp.664-669
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    • 1998
  • This research is concerned with the active vibration controller design for smart structures by a modified LQG controller. The smart structure is defined as the structure equipped with smart actuators and sensors. Various analog and digital control, techniques aimed for the piezoceramic sensors and actuators have been proposed for the active vibration control of smart structures. In this paper, the modified LQG controller is developed for the active vibration suppression of smart structures to implement the predefined decay rate on modal displacements. The proposed modified LQG controller proved its effectiveness by experiments.

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Multi-Modal Controller Usability for Smart TV Control

  • Yu, Jeongil;Kim, Seongmin;Choe, Jaeho;Jung, Eui S.
    • 대한인간공학회지
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    • 제32권6호
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    • pp.517-528
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    • 2013
  • Objective: The objective of this study was to suggest a multi-modal controller type for Smart TV Control. Background: Recently, many issues regarding the Smart TV are arising due to the rising complexity of features in a Smart TV. One of the specific issues involves what type of controller must be utilized in order to perform regulated tasks. This study examines the ongoing trend of the controller. Method: The selected participants had experiences with the Smart TV and were 20 to 30 years of age. A pre-survey determined the first independent variable of five tasks(Live TV, Record, Share, Web, App Store). The second independent variable was the type of controllers(Conventional, Mouse, Voice-Based Remote Controllers). The dependent variables were preference, task completion time, and error rate. The experiment consist a series of three experiments. The first experiment utilized a uni-modal Controller for tasks; the second experiment utilized a dual-modal Controller, while the third experiment utilized a triple-modal Controller. Results: The first experiment revealed that the uni-modal Controller (Conventional, Voice Controller) showed the best results for the Live TV task. The second experiment revealed that the dual-modal Controller(Conventional-Voice, Conventional-Mouse combinations) showed the best results for the Share, Web, App Store tasks. The third experiment revealed that the triple-modal Controller among all the level had not effective compared with dual-modal Controller. Conclusion: In order to control simple tasks in a smart TV, our results showed that a uni-modal Controller was more effective than a dual-modal controller. However, the control of complex tasks was better suited to the dual-modal Controller. User preference for a controller differs according the Smart TV functions. For instance, there was a high user preference for the uni-Controller for simple functions while high user preference appeared for Dual-Controllers when the task was complex. Additionally, in accordance with task characteristics, there was a high user preference for the Voice Controller for channel and volume adjustment. Furthermore, there was a high user preference for the Conventional Controller for menu selection. In situations where the user had to input text, the Voice Controller had the highest preference among users while the Mouse Type, Voice Controller had the highest user preference for performing a search or selecting items on the menu. Application: The results of this study may be utilized in the design of a controller which can effectively carry out the various tasks of the Smart TV.

스마트 그리드를 위한 무선 기반의 수요 반응 기능을 가지는 조명 제어용 장치 개발 및 실험적 평가 (Development and Experimental Evaluation of the Wireless Illumination Controller with Demand Response for the Smart Grid)

  • 최인호;이정한;홍승호
    • 전기학회논문지
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    • 제60권6호
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    • pp.1215-1224
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    • 2011
  • Recently, a lot of research for the smart grid technology have been carried out to achieve energy efficiency for the electronic products. In order to practically apply this study, smart instruments which are capable of the AMI (Advanced Metering Infrastructure) and DR (Demand Response) function are necessary. However, it is difficult to apply the function of the smart grid to the electronic product that cannot support the smart grid. Accordingly, the efficient use of electric energy is impossible. In order to solve this problem, the electronic product has to be changed into the exclusive electronic product supporting smart grid technology or the smart controller has to be attached the outside of the device. In this study, we developed the smart controller for connecting the electric appliances to the smart grid system. It can be attached to the illumination and the smart grid-based lamp control system at home. We additionally designed the message frame and the protocol to operate the smart controller with the AMI based EMS (Energy Management Server). We developed an experimental system to practically verify functions of the smart controller which is attached to the lighting device. From the system, we showed that the electric source of the illumination can be controlled according to the load change and saved energy effectively. We also confirmed the structural benefit and the energy-efficient effect through the verification of the smart controller.

안드로이드 플랫폼을 탑재한 스마트 온도제어기의 MMI 시스템 개발 (Development of MMI System for Smart Temperature controller with Android Platform)

  • 이갑래
    • 문화기술의 융합
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    • 제5권4호
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    • pp.457-465
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    • 2019
  • 본 연구에서는 안드로이드 플랫폼을 탑재한 스마트 온도 제어기의 사용자 인터페이스(MMI)시스템에 대한 개발 방법을 나타낸다. 개발하는 스마트 온도제어기의 MMI 시스템은 온도 그래프 및 데이터를 원거리에서 모바일장치를 통하여 확인할 수 있도록 무선 WiFI 기능과 연동되는 시스템을 개발한다. 먼저, 스마트 온도제어기의 사용자 인터페이스(MMI)시스템의 하드웨어 인터페이스 회로설계방법을 나타내고, MMI 시스템의 운영 소프트웨어 개발 방법을 나타낸다. 스마트 온도제어기는 실시간 온도제어기 기능과 MMI 시스템 기능을 수행하는 이중 프로세서를 사용한다. 이어서 개발된 스마트 온도제어기의 MMI시스템의 실제 작동 시험을 통한 동작 성능을 평가한다. 안드로이드 플랫폼을 탑재함으로서 스마트온도제어기의 개발 기간을 줄일 수 있다.

IoT 서비스를 지원하는 Smart Frame SoC 설계 (Design of Smart Frame SoC to support the IoT Services)

  • 양동헌;황인한;김아라;;류광기
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2015년도 추계학술대회
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    • pp.503-506
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    • 2015
  • IoT(Internet of Things) 상용화에 따라 무선 통신이 가능한 하드웨어 구조 개발의 필요성이 증가하고 있다. 따라서 본 논문에서는 디바이스 간 연동이 가능한 Smart Frame System이 내장된 SoC(System on a Chip) 플랫폼 하드웨어 구조를 제안한다. 기존 디지털 액자에 무선통신 기능과 실시간 처리가 가능한 하드웨어 구조를 적용하였고, Bluetooth를 이용하여 제어할 수 있는 스마트폰 어플리케이션을 개발하였다. 제안하는 SoC 플랫폼의 하드웨어 구조는 CIS(CMOS Image Sensor) Controller 모듈, Memory Controller 모듈, 확대, 축소, 회전 등의 다양한 영상처리를 위한 ISP(Image Signal Processing) 모듈, 디바이스 간 통신을 위한 Bluetooth Interface, 영상 출력을 위한 VGA Controller 모듈, TFT-LCD Controller 모듈로 구성된다. IoT 서비스를 지원하는 Smart Frame System은 Virtex4 XC4VLX80 FPGA 디바이스가 장착된 HBE-SoC-IPD 테스트 보드를 사용하여 구현 및 검증하였으며, 동작 주파수는 54MHz이다.

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Hardware-in-the-loop Simulation Method for a Wind Farm Controller Using Real Time Digital Simulator

  • Kim, Gyeong-Hun;Kim, Jong-Yul;Jeon, Jin-Hong;Kim, Seul-Ki;Kim, Eung-Sang;Lee, Ju-Han;Park, Minwon;Yu, In-Keun
    • Journal of Electrical Engineering and Technology
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    • 제9권5호
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    • pp.1489-1494
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    • 2014
  • A hardware-in-the-loop simulation (HILS) method for a wind farm controller using a real time digital simulator (RTDS) is presented, and performance of the wind farm controller is analyzed. A 100 MW wind farm which includes 5 MW wind power generation systems (WPGS) is modeled and analyzed in RSCAD/RTDS. The wind farm controller is implemented by using a computer, which is connected to the RTDS through transmission control protocol/internet protocol (TCP/IP). The HILS results show the active power and power factor of the wind farm, which are controlled by the wind farm controller. The proposed HILS method in this paper can be effectively utilized to validate and test a wind farm controller under the environment in practice without a real wind farm.

Web Based Smart Home Automation Control System Design

  • Hwang, Eui-Chul
    • International Journal of Contents
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    • 제11권4호
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    • pp.70-76
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    • 2015
  • The development of technology provides and increases security as well as convenience for humans. The development of new technology directly affects the standard of life thanks to smart home automatic control systems. This paper describes a door control, automatic curtain, home security (CCTV, fire, gas, safe, etc.), home control (energy, light, ventilation, etc.) and web-based smart home automatic controller. It also describes the use of ARM (Advanced RISC Machines) for automatic control of home equipment, a Multi-Axes Servo Controller using FPGA (Field Programmable Gate Array) and PLC (programmable logic controller). Additionally, it describes the development of a HTML editor using web auto control software. The tab loading time (7 seconds) is faster when using ARM-based web browser software instead of Chrome and Firefox is used because the browser has a small memory footprint (300M). This system is realized by web auto controller language which controls and uses PLCs that are easier than existing devices. This smart home automatic control technology can control smart home equipment anywhere and anytime and provides a remote interface through mobile equipment.

적응형 PPF 제어기를 이용한 지능구조물의 실시간 능동진동제어 (Real-time Active Vibration Control of Smart Structure Using Adaptive PPF Controller)

  • 허석;이승범;곽문규;백광현
    • 한국소음진동공학회논문집
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    • 제14권4호
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    • pp.267-275
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    • 2004
  • This research is concerned with the development of a real-time adaptive PPF controller for the active vibration suppression of smart structure. In general, the tuning of the PPF controller is carried out off-line. In this research, the real-time learning algorithm is developed to find the optimal filter frequency of the PPF controller in real time and the efficacy of the algorithm is proved by implementing it in real time. To this end, the adaptive algorithm is developed by applying the gradient descent method to the predefined performance index, which is similar to the method used popularly in the optimization and neural network controller design. The experiment was carried out to verify the validity of the adaptive PPF controller developed in this research. The experimental results showed that adaptive PPF controller is effective for active vibration control of the structure which is excited by either impact or harmonic disturbance. The filter frequency of the PPF controller is tuned in a very short period of time thus proving the efficiency of the adaptive PPF controller.

Influence of imperfection on the smart control frequency characteristics of a cylindrical sensor-actuator GPLRC cylindrical shell using a proportional-derivative smart controller

  • Zare, Reza;Najaafi, Neda;Habibi, Mostafa;Ebrahimi, Farzad;Safarpour, Hamed
    • Smart Structures and Systems
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    • 제26권4호
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    • pp.469-480
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    • 2020
  • This is the first research on the smart control and vibration analysis of a Graphene nanoplatelets (GPLs) Reinforced Composite (GPLRC) porous cylindrical shell covered with piezoelectric layers as sensor and actuator (PLSA) in the framework of numerical based Generalized Differential Quadrature Method (GDQM). The stresses and strains are obtained using the First-order Shear Deformable Theory (FSDT). Rule of the mixture is employed to obtain varying mass density and Poisson's ratio, while the module of elasticity is computed by modified Halpin-Tsai model. The external voltage is applied to sensor layer and a Proportional-Derivative (PD) controller is used for sensor output control. Governing equations and boundary conditions of the GPLRC cylindrical shell are obtained by implementing Hamilton's principle. The results show that PD controller, length to radius ratio (L/R), applied voltage, porosity and weight fraction of GPL have significant influence on the frequency characteristics of a porous GPLRC cylindrical shell. Another important consequence is that at the lower value of the applied voltage, the influence of the smart controller on the frequency of the micro composite shell is much more significant in comparison with the higher ones.

이산시간 퍼지-슬라이딩모드를 이용한 스마트구조물의 강건진동제어 (Robust Vibration Control of Smart Structures via Discrete-Time Fuzzy-Sliding Modes)

  • 최승복;김명석
    • 대한기계학회논문집A
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    • 제20권11호
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    • pp.3560-3572
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    • 1996
  • This paper presents a new discrete-time fuzzy-sliding mode controller for robust vibration control of a smart structure featuring a piezofilm actuator. A governong equation of motion for the smart beam structure is derived and discrete-time codel with mismatched uncertainties such as parameter variations is constructed ina state space. A discrete-time sliding mode control system consisting of an equivalent controller and a discontinuous controller is formulated. In the design of the equivalent part, so called an equivalent controller separation method is adopted to achieve vzster convergence to a sliding surface without extension of a sliding region, in which the system robustness maynot be guaranteed. On the other hand, the discontinuous part is constructed on the basis of both the sliding and the convergence conditions using a time-varying feedback gain. The sliding moide controller is then incorporated with a fuzzy technique to appropriately determine principal control parameters such as a discountinuous feedback gain. Experimental implementation on the forced and random vibraiton controls is undertaken in order to demonstrate superior control performance of the proposed controller.