• 제목/요약/키워드: LOCOMOTION DISTANCE

검색결과 26건 처리시간 0.025초

맹인 안내용 모빌로보트의 설계 (A Design of a Mobile Robot for Blind Guidance)

  • 유상열;이응혁
    • 대한의용생체공학회:의공학회지
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    • 제6권2호
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    • pp.33-42
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    • 1985
  • In this paper, a mobile robot is designed for the blind guidance. This system is composed of an Ultrasonic Ranging Vnit, PWM Vnit, Optical Encoder Vnit. Specilly we adapted Distance Comparison Measurement Method (DCMM) in order to compensate for the error resulted from atmospheric conditions, and PWM unit for the vehicle control and Optical encoder unit for the correct locomotion control. This system is processed, using MCS-85 microcomputer, much of information on surrounding conduitions in real time. We rotated ultrasonic sensor for many sifted data acquisition and used tone generator for the Man-Machine Communication. As a result, the measurement error of the distance is about 1cm, the distance measurement could be detected 0.2m to 6m. The locomotion speed is 0.4m/sec and we examined its practical use.

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유전 알고리즘을 이용한 4족 로봇의 계단 보행 방법 (Stair Locomotion Method of Quadruped Robot Using Genetic Algorithm)

  • 변재오;최윤호
    • 한국전자통신학회논문지
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    • 제10권9호
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    • pp.1039-1048
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    • 2015
  • 본 논문에서는 곤충형 다리 구조를 갖는 4족 로봇의 효율적인 계단 보행을 위해 유전 알고리즘(Genetic Algorithm: GA)에 기반한 계단 보행 방법을 제안한다. 제안한 방법에서는 우선 계단 보행을 위한 요소와 도달 영역을 정의한다. 또한 GA 수행을 위한 유전자와 적합도 함수를 설정하고, GA를 이용하여 최소 이동 거리와 최적 에너지 안정도 여유(Energy Stability Margin: ESM)을 갖는 4족 로봇의 착지 지점을 탐색하여 걸음새 궤적을 생성한다. 마지막으로, 컴퓨터 시뮬레이션을 통해 본 논문에서 제안한 계단 보행 방법의 효용성 및 우수성을 검증한다.

구멍연잎성게, Astriclypeus manni(VERRIL 1867)의 먹이섭취, 서식밀도 및 이동속도에 관하여 (Ecological Studies on the Sand Dollar, Astriclypeus manni (Verril 1867) - Feeding, Density and Locomotion)

  • 강도형;최광식
    • 환경생물
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    • 제20권2호
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    • pp.180-188
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    • 2002
  • 부정형성게류인 구멍연잎성게는 제주도 연안에 널리 분포하고 있음에도 불구하고 생태학적 연구들이 미비한 실정이다. 이 연구는 구멍연잎성게의 행동학적 연구로서 먹이섭취, 서식밀도 및 이동에 대한 기초자료로서 시료는 제주도의 북동쪽에 위치한 함덕에서 SCUBA를 통하여 채집 및 현장에서 직접 관찰하였다. 장내용물 관찰 결과, 장내 퇴적물 입자의 평균 입도조성은 $77.6\pm{22.2}\mu{m}$였다. 장 내용물은 유공충, 저서성 요각류, 선충류, 규조류, 알, 해조류이 파편, 골편 등의 동식물 플랑크톤으로 구성되었다. 구멍연잎성게의 서식밀도는 $1m^2$ 당 0.4 개체이며, 분포패턴은 임의분포(random distribution)에 기초하는 것으로 판단되었다$(\chi^2=85.16,\;p>0.05)$. 구멍연잎성게의 이동거리는 여름철인 1998년 8월에 6.2-64.8cm $hr^{-1}(mean=25.0\pm{13.9)}$이었고, 5월에는 $2.0-43.0cm\;hr^{-1}(mean=17.7\pm{10.7)}$로 8월에 다소 높게 나타났다. 여름기간 중 관찰된 비교적 빠른 이동속도는 먹이 섭이 활동과 관련된 것으로 추정되었다.

Development of Cost-Effective Platform for Tracking and Analysis of Animal Ambulatory Patterns

  • Kwon, Jeonghoon;Park, Hong Ju;Joo, Segyeong;Huh, Soo-Jin
    • 센서학회지
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    • 제23권2호
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    • pp.82-86
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    • 2014
  • This paper reports the development of a platform for tracking and analysis of animal locomotion. The platform is composed of a commercial webcam, a metal stand for the webcam, and a plastic bathtub as a cage. Using it, researchers can track and analyze an animal's movement within the plastic bathtub's dimensions of $100cm{\times}100cm{\times}55cm$ in a cost-effective manner. After recording the locomotion of an animal with $1920{\times}1080$ resolution at a rate of 30 frames per second, finding the position of the animal in each frame and analyzing the ambulation pattern were executed with custom software. To evaluate the performance of the platform, movements of imprinting control region mice and transgenic mice were recorded and analyzed. The analysis successfully compared velocity, moving pattern, and total moving distance for the two mouse groups. In addition, the developed platform can be used not only in simple motion analysis but also in various experimental conditions, such as a water maze, by easy customization of the platform. Such a simple and cost-effective platform yields a powerful tool for animal ambulatory analysis.

Grazing Behavior and Locomotion of Young Bulls Receiving Different Nutritional Plans in a Tropical Pasture

  • Valente, E.E.L.;Paulino, M.F.;Detmann, E.;Filho, S.C. Valadares;Chizzotti, M.L.;Silva, A.G.;Maciel, I.F.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권12호
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    • pp.1717-1725
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    • 2013
  • The objectives of this study were to compare visual observation and an electronic grazing time method and to evaluate the effects of nutritional plans on intake, grazing behavior and horizontal and vertical locomotion of young bulls in a tropical pasture. Thirty-nine Nellore young bulls with an average body weight of $345{\pm}9.3$ kg kept in pasture were used. The experimental treatments consisted of: restricted: animals kept in a plot with a low mass of forage receiving mineral mixture only; control: animals receiving mineral mixture only; HPHC: a high protein and high carbohydrate supplement; HPLC: a high protein and low carbohydrate supplement; LPHC: a low protein and high carbohydrate supplement; LPLC: a low protein and low carbohydrate supplement. GPS collars equipped with activity sensors were used. Information about head position, latitude, longitude and altitude were recorded. Daytime grazing behavioral patterns monitored by a continuous focal animal recording method was compared to behavior estimated by the activity sensor. Feed intake was estimated by a marker method. The Restricted group presented lower (p<0.05) intake of dry matter and TDN. However, difference in dry matter intake was not found (p>0.05) between non-supplemented and supplemented animals. Difference was not found (p>0.05) in daytime grazing time obtained by visual observation or the activity sensor method. The restricted group showed longer (p<0.05) grazing time (9.58 h/d) than other groups, but difference was not found (p>0.05) in the grazing time between Control (8.35 h/d) and supplemented animals (8.03 h/d). The Restricted group presented lower (p<0.05) horizontal locomotion distance (2,168 m/d) in comparison to other groups (2,580.6 m/d). It can be concluded that the use of activity sensor methods can be recommended due to their being similar to visual observation and able to record 24-h/d. While supplements with high carbohydrates reduce pasture intake, they do not change grazing behavior. Moderate supplementation (until 50% of protein requirement and 30% of energy requirement) of beef cattle on tropical pasture has no effect on daily locomotion.

가변길이 엔드팁을 갖는 원추형 스프링을 이용한 도약로봇의 이동성 향상 (Mobility Improvement of a Jumping Robot using Conical Spring with Variable Length Endtip)

  • 김기석;김병상;송재복;임충혁
    • 제어로봇시스템학회논문지
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    • 제15권11호
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    • pp.1108-1114
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    • 2009
  • Mobility is one of the most important features for a guard robot since it should be operated in rough places. A wheel-based mobile robot capable of jumping is an appropriate structure for a guard robot because it can easily satisfy the requirements for small guard robots. The jumping robot can reach a higher place more rapidly than other locomotion methods. This research proposes a small robot equipped with the jumping mechanism based on the conical spring with the variable length endtip. The variable length endtip enables the independent control of the jump force and jump angle which are related to the jump height and jump distance, respectively. Various experiments demonstrated that the proposed jumping mechanism can provide the independent control of jump force and jump angle, and improve the mobility of a small robot to overcome an obstacle. Furthermore, a combination of the jumping mechanism and the PSD sensor to measure the distance to the step enable the jumping robot to autonomously climb stairs.

Locomotive Characteristic Analysis of Terrestrial Vertebrates for the Modeling of Four-Legged Walking Machine

  • Park, S.H.;Jeong, G.J.
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.743-747
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    • 2000
  • The coordinated mechanism of terrestrial vertebrates enables them to maneuver over all of the terrain conditions since they have a distinct ability to adapt to varying conditions. Their locomotions remain infinitely more advanced and elegant than that of present-day existing mechanical walking robots. However, the principles of existing walking robots are based more on technical rather than on biological concepts, yielding unstable locomotion with low speed. In order to apply these advanced biological phenomena to the mechanical design of 4-legged walking robot, modeling methods are introduced and mathematical equations are also introduced.

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전동휠체어의 벽면추종 기법에 관한 연구 (A Study on the Wall Following Method of the Motorized Wheelchair)

  • 최인구;이응혁
    • 대한의용생체공학회:의공학회지
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    • 제15권2호
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    • pp.209-216
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    • 1994
  • The objective of the research reported in this paper is to design locomotion system of the motorized wheelchair, to develope the wall following algorithm. The indoor navigation of a motorized wheelchair can be based on the wall following techniques. In this paper, it is proposed to enhance stability and efficiency using the 3 ultrasonic sensors arranged at a same perpendicular pivot. Using this method, the angle between the motorized wheelchair and the wall is detected and the range of control commands has been increased. For the better stability, the calculated slope of a wall using LSLF algorithm was fed back to the control part. By adapting the suggested algorithm and method, the motorized wheelchair could follow a wall in 4 seconds, for a change of distance between the wheelchair and wall from 30 to 100cm.

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카메라 교정에 의한 전동휠체어의 위치 주행지도 구성에 관한 연구 (A Study on the Construction of Locomotion Map of Motorized Wheelchair using a Camera Calibration)

  • 신대섭;문철홍;홍승홍
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1996년도 추계학술대회
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    • pp.95-98
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    • 1996
  • In this paper, The vehicle's path construction method for motorized wheelchair's autonomous navigation in a building through analysis of a corridor image using vision system has been proposed and We detected lines of vertical axis through camera distortion parameter, which was measured by camera calibration in a corridor image. Then we got the feature points in the lines. We analyzed the distance of feature points and what is feature points. we reconstructed corridor image to vehicle's path.

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The Design of Controller for Unlimited Track Mobile Robot

  • Park, Han-Soo;Heon Jeong;Park, Sei-Seung
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.41.6-41
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    • 2001
  • As autonomous mobile robot become more widely used in industry, the importance of navigation system is rising, But eh primary method of locomotion is with wheels, which cause man problems in controlling tracked mobile robots. In this paper, we discuss the used navigation control of tracked mobile robots with multiple sensors. The multiple sensors are composed of ultrasonic wave sensors and vision sensors. Vision sensors gauge distance using a laser and create visual images, to estimate robot position. The 80196 is used at close range and the vision board is used at long range. Data is managed in the main PC and management is distributed to ever sensor. The controller employs fuzzy logic.

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