• 제목/요약/키워드: mobile robot kinematics

검색결과 87건 처리시간 0.027초

칼만필터를 사용한 자율주행로봇의 항법제어기 설계 (Design of Navigation Controller for Autonomous Mobile Robots using Kalman Filter)

  • 최광섭;박태형
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 제39회 하계학술대회
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    • pp.1807-1808
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    • 2008
  • When it is used for autonomous mobile robots by using dead-reckoning system, odometry system with encorder is the simplest method as well as well-known in the industry. However, odometry system is reflected slide, friction and mechanical errors of wheels when operating the position estimation. And also in order to minimize errors of direction angle which is the most important factor that it is designed the controller in controlling kinematics and quadratic curve, PID that came into the values of sensor fusion with encorder and gyroscope sensor. After designing, the autonomous mobile robot is producted practically and inspected how it works.

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관로 검사로봇 자세의 퍼지 PID제어 (A Fuzzy PID Control of Robot for Pipes Inspection)

  • 김도욱;양해원;윤지섭
    • 대한전기학회논문지:시스템및제어부문D
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    • 제49권8호
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    • pp.473-480
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    • 2000
  • A fuzzy PID controller is proposed for the posture control of a two DOF robot vehicle inspecting the defects of the inner wall of sewage pipes. The main difficulty in controlling these kinds of vehicles lies in that the center of two mobile shafts does not coincide with the weight center of the vehicle due to its long and wide shape. In this case the previous controller, based on the assumption that the gap between these centers are small, can not guarantee satisfactory transient response characteristics. In this paper, this gap is included in the mathematical modelling of the robot kinematics, and in order to compensate the unsatisfactory transient response characteristics, the fuzzy PID controller is proposed. This controller tunes the PID control gains with respect to the current state of the errors between the reference and the current postures. A series of simulations has been performed to investigate the tracking performance of the proposed controller for the lane changing path and the robustness to the external disturbance. The simulation results show that the proposed controller has a satisfactory tracking performance in the transient state as compared with that of the backstepping control given in reference.

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LCD 글래스 핸들링 로봇의 실시간 정적 처짐 보상 (Real-time Static Deflection Compensation of an LCD Glass-Handling Robot)

  • 조필주;김동일;김효규
    • 대한기계학회논문집A
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    • 제30권7호
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    • pp.741-749
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    • 2006
  • For last couple of decades, uses of TFI-LCDs have been expanded to many FPD(Flat Panel Display) applications including mobile displays, desktop monitors and TVs. Furthermore, there has been growing demand for increasingly larger LCD TVs. In order to meet this demand as well as to improve productivity, LCD manufactures have continued to install larger-generation display fabrication facilities which are capable of producing more panels and larger displays per mother glass(substrate). As the size of mother glass becomes larger, a robot required to handle the glass becomes bigger accordingly, and its end effectors(arms) are extended to match the glass size. With this configuration, a considerable static deflection occurs at the end of the robot arms. In order to stack maximum number of mother glasses on a given footprint, the static deflection should be compensated. This paper presents a novel static deflection compensation algorithm. This algorithm requires neither measurement instrument nor additional vertical axis on the robot. It is realized by robot controller software. The forward and inverse kinematics considering compensation always guarantees a unique solution, so the proposed algorithm can be applied to an arbitrary robot position. The algorithm reduced static deflection by 40% in stationary robot state experiment. It also improved vertical path accuracy up to 60% when the arm was running at its maximum speed. This algorithm has been commercialized and successfully applied to a seventh-generation LCD glass-handling robot.

구난로봇을 위한 전신 기구학 제어 연구 (A Study of Whole Body Kinematic Control for a Rescue Robot)

  • 홍성일;이원석;강신천;강윤식;박용운
    • 한국군사과학기술학회지
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    • 제17권6호
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    • pp.853-860
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    • 2014
  • This paper introduces a Korean rescue robot and presents a whole body kinematic control strategy. The mission of the rescue robot is to move and lift patients or soldiers with impaired mobility in the battlefields, hospitals and hazardous environments. In order for a robot to rescue and assist humans, reliable mobility in various environments, large load carrying capacity, and dextrous manipulability are required. For these objects the robot has variable configuration mobile platform with tracks, dual arm manipulator, and two types of grippers. The electric actuators provide the strength to lift a wounded soldier up to 120 kg using whole body joints. To control the robot with multi degree of freedom, we need to synthesize complex whole-body behaviors, and to manage multiple task primitives systematically. We are to present a whole body kinematic control methodology, and demonstrate its effectiveness through numerical simulations.

이동 로봇의 추종 제어를 위한 이중 슬라이딩 표면에 기반한 슬라이딩 모드 제어 (Double Sliding Surfaces based on a Sliding Mode Control for a Tracking Control of Mobile Robots)

  • 이준구;최윤호;박진배
    • 제어로봇시스템학회논문지
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    • 제19권6호
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    • pp.495-500
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    • 2013
  • This paper proposes a double sliding surfaces based on a sliding mode control for a tracking control of nonholonomic mobile robots in the Cartesian coordinates. In order to remove sliding surface constraints, we design the additional sliding surface for the heading angle with respect to the newly defined coordinates. Then, we define the switching law based on the posture error to combine the designed sliding surface with the previous one. By using the double sliding surfaces and the switching law, we obtain the control law for arbitrary trajectories. It is proved that the position tracking error and the heading direction error asymptotically converge to zero, respectively, with the Lyapunov stability theory. Finally, through computer simulations, we demonstrate the effectiveness of the proposed control system.

확장 칼만 필터를 이용한 로봇의 실내위치측정 (Indoor Localization for Mobile Robot using Extended Kalman Filter)

  • 김정민;김연태;김성신
    • 한국지능시스템학회논문지
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    • 제18권5호
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    • pp.706-711
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    • 2008
  • 본 논문에서는 Inertial Navigation System (INS)와 Ultrasonic-SATellite (U-SAT)의 센서융합을 기반으로 100mm 이하의 정밀위치측정 시스템을 보여준다. INS는 자이로와 두 개의 엔코더로 구성되고, U-SAT는 네 개의 송신기와 한 개의 수신기로 구성하였다. 구성된 센서들은 정밀한 정밀위치측정을 위하여 Extended Kalman Filler (EKF)를 통해 센서들을 융합하였다. 위치측정의 성능을 증명하기 위해 본 논문에서는 로봇이 0.5 m/s의 속도로 주행한 실제 데이터(직진, 곡선)와 시뮬레이션을 통한 실험을 하였으며, 실험에 사용된 위치측정방법은 일반적인 센서융합과 INS 데이터만을 칼만 필터에 이용한 센서융합을 비교하였다. 시뮬레이션과 실제 데이터를 통해 실험한 결과, INS 데이터만을 칼만 필터에 이용한 센서융합이 더 정밀함을 확인할 수 있었다.

미소운동 변환을 이용한 자율주행 자전거의 기구학 모델 (Kinematic Modeling for Autonomous Bicycle Using Differential Motion Transformation)

  • 이수영
    • 로봇학회논문지
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    • 제8권4호
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    • pp.292-297
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    • 2013
  • This paper presents a new method of kinematic modeling for autonomous bicycle by using the differential motion transformation. Kinematic model is indispensable to trajectory planning and control for an autonomous mobile robot. The conventional methods of kinematic modeling for an autonomous bicycle depend on intuition by geometry. On the contrary, the proposed method in this paper is based on the systematic differential motion transformation, thus applicable to various types of autonomous bicycles. The differential motion transformation gives Jacobian between two coordinate frames and the velocity kinematics as a result.