• 제목/요약/키워드: the joint angle

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로보트 시스템의 동력학적 제한 조건과 가변구조 제어 파라메타의 상관관계에 관한 연구 (A Study on the Relation Between the Robot System Dynamic Constraints and Variable Structure Control Parameters)

  • 이홍규;이범희;최계근
    • 대한전자공학회논문지
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    • 제26권3호
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    • pp.70-78
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    • 1989
  • 가변구조 제어방법을 이용하여 로보트 시스템을 제어하는데 있어서 현재까지는 가변구조 제어 파라메타에 대한 정확한 분석없이 슬라이딩 모드 존재조건 만을 고려하여 임의의 파라메타를 선정 사용하고 있기 때문에 가변구조 제어 방법의 장점을 최대로 활용하지 못하고 있다. 본 논문에서는 로보트 시스템 제어에 적용하여 조인트 각과 손의 궤적에 미치는 양향을 분석하였다. 본 논문에서 분석된 결과는 가변구조 제어 방법을 이용하여 경로 궤적계획을 하는데 효과적으로 활용될 수 있다.

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Modeling and Posture Control of Lower Limb Prosthesis Using Neural Networks

  • Lee, Ju-Won;Lee, Gun-Ki
    • Journal of information and communication convergence engineering
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    • 제2권2호
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    • pp.110-115
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    • 2004
  • The prosthesis of current commercialized apparatus has considerable problems, requiring improvement. Especially, LLP(Lower Limb Prosthesis)-related problems have improved, but it cannot provide normal walking because, mainly, the gait control of the LLP does not fit with patient's gait manner. To solve this problem, HCI((Human Computer Interaction) that adapts and controls LLP postures according to patient's gait manner more effectively is studied in this research. The proposed control technique has 2 steps: 1) the multilayer neural network forecasts angles of gait of LLP by using the angle of normal side of lower limbs; and 2) the adaptive neural controller manages the postures of the LLP based on the predicted joint angles. According to the experiment data, the prediction error of hip angles was 0.32[deg.], and the predicted error of knee angles was 0.12[deg.] for the estimated posture angles for the LLP. The performance data was obtained by applying the reference inputs of the LLP controller while walking. Accordingly, the control performance of the hip prosthesis improved by 80% due to the control postures of the LLP using the reference input when comparing with LQR controller.

Electromyography-signal-based muscle fatigue assessment for knee rehabilitation monitoring systems

  • Kim, Hyeonseok;Lee, Jongho;Kim, Jaehyo
    • Biomedical Engineering Letters
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    • 제8권4호
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    • pp.345-353
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    • 2018
  • This study suggested a new EMG-signal-based evaluation method for knee rehabilitation that provides not only fragmentary information like muscle power but also in-depth information like muscle fatigue in the field of rehabilitation which it has not been applied to. In our experiment, nine healthy subjects performed straight leg raise exercises which are widely performed for knee rehabilitation. During the exercises, we recorded the joint angle of the leg and EMG signals from four prime movers of the leg: rectus femoris (RFM), vastus lateralis, vastus medialis, and biceps femoris (BFLH). We extracted two parameters to estimate muscle fatigue from the EMG signals, the zero-crossing rate (ZCR) and amplitude of muscle tension (AMT) that can quantitatively assess muscle fatigue from EMG signals. We found a decrease in the ZCR for the RFM and the BFLH in the muscle fatigue condition for most of the subjects. Also, we found increases in the AMT for the RFM and the BFLH. Based on the results, we quantitatively confirmed that in the state of muscle fatigue, the ZCR shows a decreasing trend whereas the AMT shows an increasing trend. Our results show that both the ZCR and AMT are useful parameters for characterizing the EMG signals in the muscle fatigue condition. In addition, our proposed methods are expected to be useful for developing a navigation system for knee rehabilitation exercises by evaluating the two parameters in two-dimensional parameter space.

Design and analysis of non-linear space frames with semi-rigid connections

  • Sagiroglu, Merve;Aydin, Abdulkadir Cuneyt
    • Steel and Composite Structures
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    • 제18권6호
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    • pp.1405-1421
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    • 2015
  • Semi-rigid connections are the actual behavior of beam-to-column connections in steel frames. However, the behavior of semi-rigid connections is not taken into account for the simplicity in the conventional analysis and design of steel frames. A computer-based analysis and design has been studied for the three-dimensional steel frames with semi-rigid connections. The nonlinear analysis which includes the effects of the flexibility of connections is used for this study. It is designed according to the buckling and combined stress constraints under the present loading after the joint deformations and the member end forces of the space frame are determined by the stiffness matrix method. The semi-rigid connection type is limited to the top and bottom angles with a double web angle connection. The Frye-Morris polynomial model is used to describe the non-linear behavior of semi-rigid connections. Various design examples are presented to demonstrate the efficiency of the method. The results of design and analysis of unbraced semi-rigid frames are compared to the results of unbraced rigid frames under the same design requirements.

Musculoskeletal Model for Assessing Firefighters' Internal Forces and Occupational Musculoskeletal Disorders During Self-Contained Breathing Apparatus Carriage

  • Wang, Shitan;Wang, Yunyi
    • Safety and Health at Work
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    • 제13권3호
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    • pp.315-325
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    • 2022
  • Background: Firefighters are required to carry self-contained breathing apparatus (SCBA), which increases the risk of musculoskeletal disorders. This study assessed the newly recruited firefighters' internal forces and potential musculoskeletal disorders when carrying SCBA. The effects of SCBA strap lengths were also evaluated. Methods: Kinematic parameters of twelve male subjects running in a control condition with no SCBA equipped and three varying-strapped SCBAs were measured using 3D inertial motion capture. Subsequently, motion data and predicted ground reaction force were inputted for subject-specific musculoskeletal modeling to estimate joint and muscle forces. Results: The knee was exposed to the highest internal force when carrying SCBA, followed by the rectus femoris and hip, while the shoulder had the lowest force compared to the no-SCBA condition. Our model also revealed that adjusting SCBA straps length was an efficient strategy to influence the force that occurred at the lumbar spine, hip, and knee regions. Grey relation analysis indicated that the deviation of the center of mass, step length, and knee flexion-extension angle could be used as the predictor of musculoskeletal disorders. Conclusion: The finding suggested that the training of the newly recruits focuses on the coordinated movement of muscle and joints in the lower limb. The strap lengths around 98-105 cm were also recommended. The findings are expected to provide injury interventions to enhance the occupational health and safety of the newly recruited firefighters.

Comparison of Avatar Posture Formation According to 3D Virtual Garment Modeling Programs -Focusing on Cycling Movements of High-School Male Cyclist-

  • Park, Hyunjeong;Do, Wolhee
    • 한국의류학회지
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    • 제45권6호
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    • pp.965-977
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    • 2021
  • The study aimed to analyze the functional differences in 3D virtual garment programs and compare body scan data with the corresponding 3D virtual models. We selected 3D virtual garment programs, formed virtual models in a representative size for high-school male cyclists, and analyzed them using the Design-X program. The results were as follows. In the 3D virtual garment programs, the anthropometric items for virtual model forming differed significantly from the standard anthropometric items suggested by Size Korea. Comparing the lower body scan data and virtual models formed by the 3D virtual garment programs, the biggest difference was in the shapes of the waist and hips, i.e., the flatness values of the waist and hips were different for each program in the cross-section view. In the lower body, a data-input-based program was needed for changing the exact measurement position of the waist circumference and hips' shape in detail. If a 3D virtual garment program provides functions for the virtual model's joint angle input and free motion transformation, it is expected to be widely used in the sportswear industry.

척추 측만증을 동반한 흉추에 발생한 동맥류성 골낭종 - 증례 보고 - (Aneurysmal Bone Cyst of the Thoracic Spine with Scoliosis - Case Report -)

  • 한정수;김기택;조창현;양형섭
    • 대한골관절종양학회지
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    • 제5권1호
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    • pp.76-81
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    • 1999
  • Aneurysmal bone cysts are uncommon bony lesions of the spine. Approximately 3-20% of the aneurysmal bone cysts occur in the spine, predominantly in the lumbar region, but they may occur at the any level of the spine. These lesions commonly arise from the neural arch and occasionally invade the pedicle and the vertebral body. The clinical diagnosis of a spinal lesion can be very difficult in the early stages of the disease because specific symptoms and signs are usually absent or only amount to back pain. However, depending on the level of involvement and the extent of neurological compression, a wide variety of neurological symptoms and signs may appear, ranging from mild radicular symptoms to complete paraplegia or tetraplegia. Available treatment options include complete excision or curettage of the lesion with bone graft, but where excision cannot be achieved, low dose radiation or arterial embolization may be used. We report a case of aneurysmal bone cyst in the pedicle of the T10 spine with nonstructural scoliosis of $40^{\circ}$ Cobb's angle which was treated successfully with only curettage of the lesion.

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소성역 체결 볼트의 기계적 거동 유한요소해석 (Finite Element Analysis of Mechanical Behavior of Bolt Tightened in Plastic Region)

  • 조성산;신천세
    • 한국자동차공학회논문집
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    • 제18권3호
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    • pp.37-42
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    • 2010
  • Plastic region tightening is widely used in critical bolted joints in internal combustion engines in order to reduce the engine weight by maximizing the use of load-carrying capacity of bolt. Mechanical behavior of bolt tightened in plastic region under external axial tensile load is investigated for various friction conditions using three dimensional finite element analysis. The behavior of bolt tightened in elastic region as well as that in tensile test are investigated for comparison. Tightening process is simulated by rotating the bolt in order to examine the friction effect realistically. It is revealed that the bolt tightened in plastic region can carry more external load until the joint is opened, and yields at lower bolt load than the bolt tightened in elastic region. The friction coefficient has effect on the yield load, but not on the load-carrying capacity. Moreover, the scatter in the bolt preload due to friction begins with plastic deformation of bolt in the angle tightening control, whereas it begins with the onset of tightening in the torque tightening control. The observations are interpreted with the residual torsional stress in the bolt generated during the tightening.

남자 프로골퍼의 드라이버와 아이언 스윙 시 X-factor Stretch에 관한 비교 분석 (A Comparative Analysis of X-factor Stretch between Driver and Iron Swing in Male Professional Golfers)

  • 박태진;서국은
    • 한국운동역학회지
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    • 제20권4호
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    • pp.487-495
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    • 2010
  • The purpose of this study was conducted to make a comparative biomechanical analysis of X-factor and X-factor stretch during driver and iron swing. The subjects were composed of 10 professional golfers with more than 10 years career. The result was as follows: First, the analysis of the back swing with driver and iron swing showed no differences statistically between both the timing in horizontal rotating of shoulder and hip, the time required for X-factor stretch also showed no differences statistically. Second, the back swing with a driver swing showed more maximum horizontal rotation of shoulder and hip joint than the back swing with an iron swing, but the twist of shoulder and hip that was X-factor stretch angle showed no difference. Third, the GRF of the max value for the left and right foot during shoulder and hip horizontal rotation of back swing showed no differences statistically in the movement of driver and iron swing during the back swing, and the GRF of X-factor stretch for the left and right foot showed no differences statistically in driver and iron swing. Therefore the result of this research showed that the operation of torso(X-factor stretch) and weight shifting were similar although the horizontal rotation of body was different during the driver and iron swing.

신경최적화 회로를 이용한 로봇의 장애물 회피에 관한 연구 (A Study on the Obstacle Avoidance of a Robot Manipulator by Using the Neural Optimization Network)

  • 조용재;정낙영;한창수
    • 대한기계학회논문집
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    • 제17권2호
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    • pp.267-276
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    • 1993
  • 본 연구에서는 우선 네트워크의 기본 이론을 소개하고, 이를 바탕으로 로봇의 궤적계획에 이용하기 위한 변수, 구속조건, 에너지를 정의하며, 네트워크가 국부적 최 소 상태에 빠지는 것을 방지하기 위하여 Temperature Adding을 이용한 적절한 가중치 조절로 작업 공간상에 장애물이 정지하고 있는 경우와 장애물이 움직이는 경우, 같은 작업 공간상에서 동시에 움직이는 두 대의 로봇들의 충돌회피문제 등 여러 종류의 궤 적 계획 문제에 적용시켜 보고자 한다. 이와같이 궤적계획 문제를 신경회로를 이용 하여 다루게 되면, 신경회로망의 링크수나 장애물의 변화등 상황의 변화에 따르는 복 잡한 모델링 전개가 필요 없어지고, 여유 자유도를 가지는 경우에도 별도의 성능지수 를 위한 인위적인 조작을 요구하는 알고리즘의 개발이 필요없이 스스로가 최소의 에너 지 상태를 찾아가게 되며, 병렬실(parallel processing) 계산방식으로 각 링크의 위치 를 동시에 구할 수 있게 되어 실시간 제어의 가능성을 제시하여 준다.