Archive for Сентябрь 30th, 2011

An approach to designing software safety systems for rehabilitation robots

Дата: Сентябрь 30th, 2011 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 1603
  • Название документа: An approach to designing software safety systems for rehabilitation robots
  • Номер (DOI, IBSN, Патент): 10.1109/ICORR.2005.1501096
  • Изобретатель/автор: Roderick, S.N., Carignan, C.R.
  • Правопреемник/учебное заведение: Dept. of Aerosp. Eng., Maryland Univ., College Park, MD, USA
  • Дата публикации документа: 2005-08-29
  • Страна опубликовавшая документ: США
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: http://ieeexplore.ieee.org/search/freesrchabstract.jsp?tp=&a
  • Вложения: Не заполнено
  • Аналитик: Не заполнено

This paper presents a system-level approach to the design of a safety-critical robotic system that is sufficiently safe to satisfy human-subject safety criteria. This system design approach utilizes preliminary hazard analysis, and fault tree analysis, and was successfully applied to a dexterous space robot designed to fly on NASA’s space shuttle. An application of this approach to a shoulder rehabilitation exoskeleton would be presented and shown to improve the safety of the overall system.

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Human and robot integrated teleoperation

Дата: Сентябрь 30th, 2011 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 1601
  • Название документа: Human and robot integrated teleoperation
  • Номер (DOI, IBSN, Патент): 10.1109/ICSMC.1998.727875
  • Изобретатель/автор: Sooyong Lee, Munsang Kim, Jae-Bok Song, Dae-Seong Choi, Chong-Won Lee
  • Правопреемник/учебное заведение: Adv. Robotics Res. Center, Korea Inst. of Sci. & Technol., Seoul
  • Дата публикации документа: 2002-08-06
  • Страна опубликовавшая документ: Корея
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: http://ieeexplore.ieee.org/search/freesrchabstract.jsp?tp=&a
  • Вложения: Не заполнено
  • Аналитик: Не заполнено

A lot of research has been done in robot path generation, including automatic path planning and teaching/playback. Teleoperation is commonly used to control a robot from a remote site in an unknown environment. Korea Institute of Science and Technology (KIST) is developing a Humanoid robot, which has two arms (9 degrees of freedom for each), two hands (4 d.o.f. each), a waist (3 d.o.f.) and a neck (2 d.o.f.) An automatic path planner which takes advantage of redundancy is also developed, however, it requires huge computational power and time. For some tasks, which are very complex, or interacting with environments, the robot path can be generated very easily and accurately by human teaching, hence the automatic path planner is not required. Using sensors, human motion is analyzed and converted to robot joint angles. For tasks interacting with an unknown environment, teleoperation with force feedback is more useful. A simple exoskeleton-type master arm is designed based on kinematic analysis. For force reflection, pneumatic actuators are used. This device is integrated with KIST Humanoid robots. A force reflecting master hand is also developed. In addition to the master arm/hand, visual information is fed back to the human through HMD for higher interaction, and voice command interpreter/voice synthesis is integrated. Therefore a new method of human/robot integration is developed

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ARMin — design of a novel arm rehabilitation robot

Дата: Сентябрь 30th, 2011 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 1599
  • Название документа: ARMin - design of a novel arm rehabilitation robot
  • Номер (DOI, IBSN, Патент): 10.1109/ICORR.2005.1501051
  • Изобретатель/автор: Riener, R., Nef, T.
  • Правопреемник/учебное заведение: Zurich Univ., Switzerland
  • Дата публикации документа: 2005-08-29
  • Страна опубликовавшая документ: Швейцария
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: http://ieeexplore.ieee.org/search/freesrchabstract.jsp?tp=&a
  • Вложения: Не заполнено
  • Аналитик: Не заполнено

Task-oriented repetitive movement can improve movement performance in patients with neurological or orthopaedic lesions. The application of robotics can serve to assist, enhance, evaluate, and document neurological and orthopaedic rehabilitation of movements. ARMin is a new robot for arm therapy applicable to the training of activities of daily living in clinics. ARMin has a semi-exoskeleton structure with six degrees of freedom, and is equipped with position and force sensors. The mechanical structure, the actuators and the sensors of the robot are optimized for patient-cooperative control strategies based on impedance and admittance architecture. This paper describes the new robot, the mechanical structure, the control circuit, the sensors and actuators and some safety aspects.

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3D bipedal model for biomechanical sit-to-stand movement with coupled torque optimization and experimental analysis

Дата: Сентябрь 30th, 2011 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 1597
  • Название документа: 3D bipedal model for biomechanical sit-to-stand movement with coupled torque optimization and experimental analysis
  • Номер (DOI, IBSN, Патент): 10.1109/ICSMC.2010.5642012
  • Изобретатель/автор: Mughal, A.M., Iqbal, K.
  • Правопреемник/учебное заведение: Dept. of Electr. & Comput. Eng., Center for Adv. Studies in Eng., Islamabad, Pakistan
  • Дата публикации документа: 2010-11-22
  • Страна опубликовавшая документ: Пакистан
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: http://ieeexplore.ieee.org/search/freesrchabstract.jsp?tp=&a
  • Вложения: Не заполнено
  • Аналитик: Не заполнено

Sit-to-stand (STS) movement is a common human task which involves combination of a musculoskeletal structure integrated with neural control. We present a conceptual 3D bipedal nonlinear model for STS task with optimal controller design for exoskeletontorques. This model has 7 sagittal plane angles, 3 frontal plane angles, and 3 foot translational variables with 3 position based holonomic constraints. We regulate the model with optimal controller design by coupled torque optimization due to muscular interaction between ankle, knee and hip joints. Our simulation results show the improvement in the results from previous controller design schemes. We further obtain experimental data for STS task on a force plate to compare the ground reaction forces of experimental data with our mathematical framework. This proves the validity of the model to extend this mathematical framework for further analysis of healthy and neuro-deficient subjects and accordingly designs of ergonomics and rehabilitation robotics.

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Aramis: A “virtua-mechatronic” approach for neuro-rehabilitation purposes

Дата: Сентябрь 30th, 2011 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 1593
  • Название документа: Aramis: A “virtua-mechatronic” approach for neuro-rehabilitation purposes
  • Номер (DOI, IBSN, Патент): 10.1109/ITAB.2010.5687645
  • Изобретатель/автор: Savino, N., Potenza, A., Pignolo, L., Laneve, L., Dolce, G., Colizzi, L., Cirillo, P.
  • Правопреемник/учебное заведение: ICT Dept., CETMA Consortium, Brindisi, Italy
  • Дата публикации документа: 2011-01-17
  • Страна опубликовавшая документ: Италия
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: http://ieeexplore.ieee.org/search/freesrchabstract.jsp?tp=&a
  • Вложения: Не заполнено
  • Аналитик: Не заполнено

ARAMIS (automatic Recovery arm Motility integrated System) is a master-slave exoskeleton robot, studied and designed in order to provide the therapist an innovative and time/cost efficiency approach to the rehabilitation of the paretic upper limb after a stroke event. The system has been developed in order to enable therapists to define and apply, patient specific rehabilitation exercises. the final prototype enables three types of exercises: 1) Asyncronous Exercise 2) Syncronous Exercise and 3) Virtual Reality Based Exercise. The research activities were carried on in a multidisciplinary environment composed by neurologist, engineers, ICT specialists and designers.

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