• 제목/요약/키워드: Walking terrain

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4족 보행 로봇의 에너지효율에 관한 연구 (A Study on Energy Efficiency of Quadruped Walking Robot)

  • 안병원;배철오;박영산;박중순;이성근
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2003년도 춘계종합학술대회
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    • pp.309-312
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    • 2003
  • 다리를 가진 로봇은 지형에 대한 높은 적응능력을 가졌다할지라도 바퀴의 차량과 비교했을 때 일반적으로 그 속도가 상당히 낮다. 다리를 가진 로봇으로 빨리 움직이는 속도를 얻기 위해서는 두발 로봇의 달림과 4족 로봇의 속보나 뛰는 것과 같이 동적으로 안정한 걸음걸이가 좋은 해결법이다. 그러나 동적으로 안정한 걸음걸이의 에너지 효율은 일반적으로 느린 걸음걸이와 같은 안정한 걸음걸이보다 낮다. 본 논문에서는 네발로 걷는 로봇의 에너지 효율에 관한 실험적 연구를 보여준다. 빠른 걸음걸이의 2가지 패턴의 에너지 소모에 대한 TITAN-VIII을 이용한 실험을 통해 연구하였다.

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4족 보행로봇의 소비에너지 효율에 관한 시뮬레이션 (A Computer Simulation on the Efficiency of Energy Consumption for Quadruped Walking Robot)

  • 안병원;배철오;엄한성
    • 한국정보통신학회논문지
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    • 제9권6호
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    • pp.1247-1252
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    • 2005
  • 다리를 가진 로봇은 지형에 대한 높은 적응능력을 가졌다할지라도 바퀴로 구동되는 로봇과 비교했을 때 일반적으로 그 속도가 상당히 느리다. 다리를 가진 로봇으로 빨리 움직이는 속도를 얻기 위해서는 두발로봇의 달리는 것과 4족 로봇의 속보나 뛰는 것과 같이 동적으로 안정한 걸음걸이가 좋은 해결법이다. 그러나 동적으로 안정한 걸음걸이의 에너지 효율은 일반적으로 느린 걸음걸이와 같은 안정한 걸음걸이보다 낮다. 본 논문에서는 4족으로 걷는 로봇의 에너지 효율에 관한 실험적 연구를 보여주고 있다. 걷는 보행 방법에 따른 2가지 패턴에 따른 에너지 효율관계를 TITAN-VIII이라 명명된 4발로 걷는 로봇을 기준으로 시뮬레이션을 통하여 비교분석 하였다.

햅틱피드백 장치를 이용한 시각장애인 이동보조시스템 (A Walking Aid System for Blind People by Exploiting a Haptic Feedback Equipment)

  • 민성희;정윤재;오유수
    • 대한임베디드공학회논문지
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    • 제10권3호
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    • pp.157-164
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    • 2015
  • In this paper we propose a walking aid system for blind people by exploiting a haptic feedback equipment. The proposed system is a form of haptic feedback cane which is composed of MCU, communication module, sensing module and actuator. The proposed system recognizes obstacles around the blind by using ultrasonic sensors in the sensing module. Moreover, the system generates feedback information about the detected obstacle and then notifies the information to the blind through the actuator. The blind can notice the direction of the detected obstacle with the haptic feedback equipment and vibration motor. Futhermore, the proposed system controls a nearby IoT(Internet of Things) system by utilizing push buttons through the ZigBee communication. Finally, the blind can easily decide the direction of the obstacle without interference of terrain feature by using the proposed system.

물결걸음새를 이용한 준정적 4족 보행로봇에 관한 연구 (A study for semi-static quadruped walking robot using wave gait)

  • 최기훈;김태형;유재명;김영탁
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2001년도 춘계학술대회 논문집
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    • pp.551-554
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    • 2001
  • A necessity of remote control robots or various searching robots etc. that accomplish works given instead of human under long distance and extreme environment such as volcano, universe, deep-sea exploration and nuclear power plant etc. is increasing, and so the development and the research regarding these mobile robots are actively progressing. The wheel mobile robot or the track mobile robot have a sufficient energy efficiency under this en, but also have a lot of limits to accomplish works given which are caused from the restriction of mobile ability. Therefore, recently many researches for the walking robot with superior mobility and energy efficiency on the terrain, which is uneven or where obstacles, inclination and stairways exist, have been doing. The research for these walking robots is separated into fields of mechanism and control system, gait research, circumference environment and system condition recognition etc. greatly. It is a research field that the gait research among these is the centralist in actual implementation of walking robot unlike different mobile robots. A research field for gait of walking robot is classified into two parts according to the nature of the stability and the walking speed, static gait or dynamic gait. While the speed of a static gait is lower than that of a dynamic gait, a static gait which moves the robot to maintain a static stability guarantees a superior stability relatively. A dynamic gait, which make the robot walk controlling the instability caused by the gravity during the two leg supporting period and so maintaining the stability of the robot body spontaneously, is suitable for high speed walking but has a relatively low stability and a difficulty in implementation compared with a static gait. The quadruped walking robot has a strong point that can embody these gaits together. In this research, we will develope an autonomous quadruped robot with an asaptibility to the environment by selectry appropriate gait, element such as duty factor, stride, trajectory, etc.

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DSP를 사용한 소형 인간형 로봇의 제어기 (A DSP-based Controller for a Small Humanoid Robot)

  • 조정산;성영휘
    • 융합신호처리학회논문지
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    • 제6권4호
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    • pp.191-197
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    • 2005
  • 2족 보행을 특징으로 하는 인간형 로봇은 구동해야할 관절의 수가 매우 많으며, 로봇의 보행 상태 등을 인식하기 위하여 다양한 센서의 활용이 필요하다. 본 논문에서는 21개의 RC 서보 모터를 사용한 소형의 2족 보행 로봇의 제어기의 구조를 제안하고 구현한다. 제안된 제어기는 호스트 PC와 DSP를 사용한 주 제어기, 그리고 FPGA를 사용한 보조 제어기의 계층 구조를 갖는다. 호스트 PC에서는 보폭, 보행 시간 등과 같은 보행 파라미터에 따른 로봇의 보행 데이터를 생성하여 주 제어기로 전송하고, TI사에서 제어용으로 출시된 DSP 칩인 TMS320LF2407A를 사용하여 구현된 주 제어기에서는 보조 제어기를 통하여 21개의 RC 서보 모터를 구동한다. 또한 주 제어기와 2축 가속도 센서를 인터페이스하여 보행 바닥면의 경사도에 따른 균형잡기 실험과 기울어진 바닥면의 기울기를 검출하여 경사면 보행이 가능함을 보인다.

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복합 링크기구를 이용한 다족 보행로봇 (Multi-legged Walking Robot Using Complex Linkage Structure)

  • 임상현;이동훈;강현창;김상현
    • 한국기계가공학회지
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    • 제20권11호
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    • pp.74-79
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    • 2021
  • Generally, multi-legged walking robots have excellent mobility in rough and uneven terrain, and they are deployed for the safety of rescuers in various disaster environments. However, as each leg is driven by a number of actuators, it leads to a complicated structure and high power consumption; therefore, it is difficult to put them into practical use. In this article, a new concept is proposed of a walking robot whose legs are driven by a complex linkage structure to overcome the deficiencies of conventional multi-legged walking robots. A double crank-rocker mechanism is proposed, making it possible for one DC motor to actuate the left and right movements of two neighboring thighs of the multi-legged walking robot. Each leg can also move up and down through an improved cam structure. Finally, each mechanism is connected by spur and bevel gears, so that only two DC motors can drive all legs of the walking robot. The feasibility of the designed complex linkage mechanism was verified using the UG NX program. It was confirmed through actual production that the proposed multi-legged walking robot performs the desired motion.

Design and Analysis of Small Walking Robots Utilizing Piezoelectric Benders

  • Park, Jong Man;Song, Chi Hoon;Park, Min Ho
    • 한국전기전자재료학회논문지
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    • 제33권5호
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    • pp.380-385
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    • 2020
  • Over the past decade, small robots have been of particular interest in the engineering field. Among the various types of small robots, biomimetic robots, which mimic animals and insects, have been developed for special activities in areas where humans cannot physically access. The optimal motion of a walking robot can be determined by the characteristics of the traversed surface (e.g., roughness, curvature, slope, materials, etc.). This study proposes three types of piezoelectric structures using different driving mechanisms, depending on the application range of the small walking robots. Dynamic modeling using computer-aided engineering optimized the shape of the robot to maximize its moving characteristics, and the results were also verified through its fabrication and experimentation. Three types of robots, named by their actuator shapes as I, π, & T-shape, were proposed regarding application for small scale ambulatory robots to different terrain conditions. Among these, the T-shaped robots were shown to have a wide range of speeds (from 2 mm/s up to 255 mm/s) and good carrying capacity (up to 10 g at 50 mm/s) through driving experiments. Based on this study, we proposed possible application areas for the three types of walking robot actuators.

다양한 험지 정찰을 위한 6족 보행 로봇 개발 (Development of a Hexapod Robot for Multi-terrain Reconnaissance)

  • 임승용;김종형;김형직
    • 한국생산제조학회지
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    • 제24권6호
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    • pp.667-674
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    • 2015
  • This paper describes the development of a prototype hexapod robot with six circular legs to overcome a variety of challenging terrains. The legs of the robot are very important for stability during walking, which are analyzed for determining the optimal design parameters through CAE tools. Its control system consists of three types of sensors, microprocessors, and communication modules for PC interface. The entire operation of the robot can be controlled and monitored using a PC. The experimental operations for three different roads verified the feasibility of the prototype robot for carrying out reconnaissance on multi terrain. In the near future, the prototype robot can be used for a military purpose of detecting and informing a potential risk in advance.

퍼지 알고리즘을 이용한 불규칙한 지면에서 보행하는 휴머노이드 로봇의 실시간 보행 안정성 구현 (Walking Algorithm for Real-Time Stability of a Humanoid Robot Using Fuzzy Algorithm Under Uneven Terrain)

  • 조형래;김진걸
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년 학술대회 논문집 정보 및 제어부문
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    • pp.205-207
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    • 2006
  • Since a humanoid robot inherently suffers from instability and always risks tipping itself over, or topping to the ground, it is necessary to ensure high stability and reliability of walk. An unexpected ground condition is one of the principal factors of instability. This paper proposes a walk stabilization method consisting of a Fuzzy algorithm and geometry under uneven terrain. The ground reaction forces that are measured by the FSR sensors on the sole are used to check the ground condition and the robot posture. The effectiveness of proposed method is verified by computer simulations.

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Theo Janson Mechanism 을 이용한 보행 로봇 설계 (Designing walking robot using Theo Jansen Mechanism)

  • 이병철
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.411-416
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    • 2016
  • Existing moving robots has several kinds of moving method; using wheel, jointed leg structure and so on. Wheel type can be operated by DC motor so it is simple and efficient. However, it is not appropriate to pass irregular terrain and obstacle. Leg structure type has an advantage in those cases. Generally, Leg structure is operated by several servo motors attached to each joint. It makes a robot heavier and more complicate due to increase of the degree of freedom. However, by using Theo Jansen Mechanism, one (or more) leg have only single-degree of freedom and can be operated by only one DC motor. So leg structure using Theo Jansen Mechanism will be good choice if robots have to be mass-produced. This paper describes the following a walking robot designed and produced based on Theo Jansen Mechanism, simulating process of Theo Jansen leg structure using Edison m.Sketch and how to solve several of discovered problem of the robot.

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