• 제목/요약/키워드: robotic technology

검색결과 456건 처리시간 0.023초

상대위치인식과 자계안내를 이용한 무인주행차량의 주행기법 (Navigation of Unmanned Vehicle Using Relative Localization and Magnetic Guidance)

  • 이용준;유영재
    • 한국지능시스템학회논문지
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    • 제21권4호
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    • pp.430-435
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    • 2011
  • 본 논문에서는 상대위치인식과 자계기반 안내를 결합한 무인주행 차량의 주행기법을 제안한다. 자계기반 주행은 이동하는 경로에 자계가 항상 계측되면 안정적인 자율주행이 가능하다. 하지만 외부요인으로 인해 자계가 검출되지 않으면 예측 불가능한 상황이 발생하는 단점이 있다. 따라서 상대위치인식을 이용한 무인주행을 통해 자계가 검출되지 않는 구간을 극복하는 방법을 제안하였다. 제안한 방법의 유용함을 검증하기 위하여 차량을 개발하고 자계기반 주행 실험하였다. 또한 자계가 없는 구간에서의 상대항법을 이용한 무인주행 실험을 실시하고 결과를 분석하여 문제점 극복의 가능성을 확인하였다.

빈-피킹을 위한 다관절 로봇 그리퍼의 관절 데이터를 이용한 물체 인식 기법 (Method of Object Identification Using Joint Data of Multi-Joint Robotic Gripper for Bin-picking)

  • 박종우;박찬훈;박동일;김두형
    • 한국생산제조학회지
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    • 제25권6호
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    • pp.522-531
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    • 2016
  • In this study, we propose an object identification method for bin-picking developed for industrial robots. We identify the grasp posture and the associated geometric parameters of grasp objects using the joint data of a robotic gripper. Prior to grasp identification, we analyze the grasping motion in a low-dimensional space using principle component analysis (PCA) to reduce the dimensions. We collected the joint data from a human hand to demonstrate the grasp-identification algorithm. For data acquisition of the human grasp data, we conducted additional research on the motion characteristics of a human hand. We explain the method for using the algorithm of grasp identification for bin-picking. Finally, we present a subject for future research using our proposed algorithm of grasp model and identification.

수면 주행 로봇의 안정성 향상을 위한 정적 꼬리 기구변수 최적화 (Robust Optimal Design of Tail Geometry for Stable Water-running Robots)

  • 이동규;장재형;서태원
    • 한국생산제조학회지
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    • 제25권2호
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    • pp.132-137
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    • 2016
  • Biomimetics involves the design of robotic platforms inspired from living creatures to achieve efficient operation under environmental conditions. A development within biomimetics involves investigating the function of a tail and applying it to robot design. This study aims to define the function of a static tail for water-running robots, and optimize its geometric and compliance parameters. The rolling angle of the tail is determined by the objective function, while the area and fillet ratio are used for geometric design and compliance parameters in the rolling and yawing directions. Repeated motion of the water-running robot's footpads at frequencies of 9 and 10 Hz is used as the operating condition. Robust design based on the Taguchi methodology is performed via orthogonal arrays. The optimized tail design derived in this study will be implemented in a robotic platform to improve steering and balancing functions in the pitching direction.

Intelligent Position Control of a Vertical Rotating Single Arm Robot Using BLDC Servo Drive

  • Manikandan, R.;Arulmozhiyal, R.
    • Journal of Power Electronics
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    • 제16권1호
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    • pp.205-216
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    • 2016
  • The manufacturing sector resorts to automation to increase production and homogeneity of products during mass production, without increasing scarce, expensive, and unreliable manpower. Automation in the form of multiple robotic arms that handle materials in all directions in different stages of the process is proven to be the best way to increase production. This paper thoroughly investigates robotic single-arm movements, that is, 360° vertical rotation, with the help of a brushless DC motor, controlled by a fuzzy proportional-integral-derivative (PID) controller. This paper also deals with the design and performance of the fuzzy-based PID controller used to control vertical movement against the limited scope of conventional PID feedback controller and how the torque of the arm is affected by the fuzzy PID controller in the four quadrants to ensure constant speed and accident-free operation despite the influence of gravitational force. The design was simulated through MATLAB/SIMULINK and integrated with dSPACE DS1104-based hardware to verify the dynamic behaviors of the arm.

토크센서 기반 사용자의도 파악이 가능한 보행보조기용 인휠 구동기 개발 (Development of In-wheel Actuator for Active Walking Aids Equipped with Torque Sensor for User Intention Recognition)

  • 임승환;김태근;김동엽;황정훈;김봉석;박창우;이재민;홍대희
    • 한국정밀공학회지
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    • 제31권12호
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    • pp.1141-1146
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    • 2014
  • As life expectancy becomes longer, reduction of human muscular strength threatens quality of human life. Many robotic devices have thus been developed to support and help human daily life. This paper deals with a new type of in-wheel actuator that can be effectively used for the robotic devices. BLDC motor, drive board, brake, ARS (Attribute Reference System), and torque sensor are combined in the single actuator module. The torque sensor is used to recognize human intention and the in-wheel actuator drives walking aids in our system. Its feasibility was tested with the active walking aid device equipped with the in-wheel actuator. Based on it, we designed an admittance filter algorithm to react on uphill and downhill drive. By adjusting mass, damping, and spring parameters in accordance with the ARS output, it provided convenient drive to the old on uphill and downhill walks.

체간 재활을 위한 4-DOF 로봇의 설계 및 분석에 관한 연구 (Study on the Design and Analysis of a 4-DOF Robot for Trunk Rehabilitation)

  • 에이자드 아믈;표상훈;이건협;류성기;윤정원
    • 한국기계가공학회지
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    • 제19권7호
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    • pp.41-51
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    • 2020
  • This paper presents the development of a robotic system for rehabilitation of the trunk's ability to maintain postural control under different balance conditions. The system, developed with extensive input from rehabilitation and biomedical engineering experts, consists of a seat mounted on a robotic mechanism capable of moving it with four degrees of freedom (3 rotational and 1 translational). The seat surface has built in instrumentation to gauge the movements of the user's center of pressure (COP) and it can be moved either to track the movements of the COP or according to operator given commands. The system allows two types of leg support. A ground mounted footrest allows participation of legs in postural control while a seat connected footrest constrains the leg movement and limits their involvement in postural control. The design evolution over several prototypes is presented and computer aided structural analysis is used to determine the feasibility of the designed components. The system is pilot tested by a stroke patient and is determined to have potential for use as a trunk rehabilitation tool. Future works involve more detailed studies to evaluate the effects of using this system and to determine its efficacy as a rehabilitation tool.

4차 산업혁명 기술을 활용한 군사로봇 전투개념 연구 (A Study on the Concept of Military Robotic Combat Using the 4th Industrial Revolution Technology)

  • 박상혁;남궁승필;김성권
    • 문화기술의 융합
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    • 제9권5호
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    • pp.397-401
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    • 2023
  • 본 연구는 4차 산업혁명 기반 우리나라 군(軍) 조직이 미래 전장에서 승리할 수 있는 이정표를 제시하는 측면에서 출발한 연구이다. 따라서 본 연구의 제 1장 서론은 군사 선진국들이 4차 산업혁명 기반 국방분야의 산업기술 현황이 어떻게 운용되는지 거시적 측면에서 연구의 필요성에 대해 출발하며 제 2장 이론적 배경은 우리나라 국방분야의 4차 산업혁명 기술현황과 한국형 전투(선견·선결·선타)개념을 고찰하며 제 3장 군사 선진국의 국방로봇 기술 분석은 미국, 이스라엘, 독일의 무인 전투로봇에 대한 사례를 분석하였다. 결국, 미래전은 첨단플랫폼을 기반으로 초연결· 초지능화 군(軍)으로 도약했을 때 전장을 지배할 수 있을 것이다. 우리 군(軍)도 국방로봇을 전투체계별 특징에 부합되게 연구·개발하고, 군사적으로 활용해야 할 것이며 더 나아가 적의 사이버 및 전자전·우주 공격 등으로부터 아군의 핵심능력과 중심을 보호할 수 있는 전투수행 개념을 확대·발전시켜 나가야 할 것이다.

선박건조용 다기능 핸들링로봇의 설계 (Design of ship dry multi-function handling robot)

  • 권광진;전재억;정진서;황영모;박후명;하만경
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 춘계학술대회 논문집
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    • pp.231-234
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    • 2004
  • Ratio that robot occupies is low level worldwide fairly in suspension wire, electricity electron and neutralization learning industry and domestic industry of this is staring in average love. Can speak that grafting of robotic machine and neutralization learning industry is high in terms of side of creation of the added value or progress of technology rightly hereupon. This research raises or designed multi-function handling robot that can make welding, assembly conveniently catching large size work water

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Robust control of flexible joint manipulators

  • Park, Kang-Bark;Lee, Ju-Jang
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1992년도 한국자동제어학술회의논문집(국제학술편); KOEX, Seoul; 19-21 Oct. 1992
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    • pp.618-623
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    • 1992
  • In this paper robotic manipulators in which the joints exhibit a certain amount of elasticity are considered. Based on a feedback linearized model, sliding mode control system is designed. In the control system design, weak joint stiffness assumption does not needed. Simulation results are presented to verify the validity of the control scheme. A robustness analysis for a feedback linearized model is also given with respect to uncertainties on the robot parameters.

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간단한 기구부와 결합한 공간증강현실 시스템의 샘플 기반 제어 방법 (Sampling-based Control of SAR System Mounted on A Simple Manipulator)

  • 이아현;이주호;이주행
    • 한국CDE학회논문집
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    • 제19권4호
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    • pp.356-367
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    • 2014
  • A robotic sapatial augmented reality (RSAR) system, which combines robotic components with projector-based AR technique, is unique in its ability to expand the user interaction area by dynamically changing the position and orientation of a projector-camera unit (PCU). For a moving PCU mounted on a conventional robotic device, we can compute its extrinsic parameters using a robot kinematics method assuming a link and joint geometry is available. In a RSAR system based on user-created robot (UCR), however, it is difficult to calibrate or measure the geometric configuration, which limits to apply a conventional kinematics method. In this paper, we propose a data-driven kinematics control method for a UCR-based RSAR system. The proposed method utilized a pre-sampled data set of camera calibration acquired at sufficient instances of kinematics configurations in fixed joint domains. Then, the sampled set is compactly represented as a set of B-spline surfaces. The proposed method have merits in two folds. First, it does not require any kinematics model such as a link length or joint orientation. Secondly, the computation is simple since it just evaluates a several polynomials rather than relying on Jacobian computation. We describe the proposed method and demonstrates the results for an experimental RSAR system with a PCU on a simple pan-tilt arm.