'Humanoid robot' diaporamas de présentation

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Robot-X

Robot-X

I I.T Winter Camp Robot-X Youth I.T. Winter Camp Timothy , Calvin, Kelvin , Francis Timothy, Kelvin, Calvin, Francis Robot- X Robot-X Robot –X Introduction

By Ava
(438 views)

Playing Robotic Soccer

Playing Robotic Soccer

Playing Robotic Soccer. Ofer Elrom & Dvir Afek. Lecture summary. Lecture summary. We talked about :. Robot hardware. Architecture. Self Localization Algorithm : - Scan Matching The Global Picture. Decision making. Future …. Architecture [1]. Autonomous robotic soccer players.

By medwin
(271 views)

AIHRO

AIHRO

AIHRO. Artificial Intelligent Humanoid Robot. AKHIL BASIL BABY AKHIL JOY JIBIN POULOSE. Guided by Asst prof . VIBIN C THOMAS. When Machine Becomes Man. What is. Humanoid structure (Similar to humans) Which can Interact (Hear and Talk)

By paloma
(592 views)

The Past, Present, and Future of Robotics

The Past, Present, and Future of Robotics

The Past, Present, and Future of Robotics. CMSC 479/679 May 3rd, 2010. 1400 BC. Babylonians develop the clepsydra, a clock that measures time using the flow of water. It's considered one of the first "robotic" devices in history. For centuries, inventors will refine the design. 322 BC.

By chika
(200 views)

RoboMine: The New Era of Intelligent Systems

RoboMine: The New Era of Intelligent Systems

RoboMine: The New Era of Intelligent Systems. Jonathan Chui CERM3 Laboratories The University of British Columbia. July 20, 2005 IPMM ’05 Monterey, California, USA. Introduction Background The New Era of Intelligent Systems The Exchange of Information and Intelligence

By thetis
(12 views)

The Past, Present, and Future of Robotics

The Past, Present, and Future of Robotics

The Past, Present, and Future of Robotics. CMSC 479/679 May 3rd, 2010. 1400 BC. Babylonians develop the clepsydra, a clock that measures time using the flow of water. It's considered one of the first "robotic" devices in history. For centuries, inventors will refine the design. 322 BC.

By daphne
(91 views)

High-speed Pressure Sensor Grid for Humanoid Robot Foot

High-speed Pressure Sensor Grid for Humanoid Robot Foot

High-speed Pressure Sensor Grid for Humanoid Robot Foot. Y. Takahashi, K. Nishiwaki, S.Kagami, H. Mizoguchi, H. Inoue Digital Human Research Center National Institute of Advanced Industrial Science and Technology 2-41-6, Aomi, Koto-ku, 135–0064, Japan youhei-takahashi@aist.go.jp. PPT 製作 100%.

By zavad
(145 views)

Tele-Kinesthetic Teaching of a Humanoid Robot with Haptic Data Acquisition

Tele-Kinesthetic Teaching of a Humanoid Robot with Haptic Data Acquisition

Tele-Kinesthetic Teaching of a Humanoid Robot with Haptic Data Acquisition .

By rene
(198 views)

South Korea

South Korea

South Korea. Brittany Colavito Lindsay Spinner Grace Morgan . Culture/Religion. Highly regard the values of family- Family is always the most important aspect of their lives Father is the head of the family and is responsible for everything, then the eldest son

By edmund
(121 views)

Control of a humanoid robot using EEG

Control of a humanoid robot using EEG

Control of a humanoid robot using EEG. Problem. EEG is low bandwidth Hard to exercise fine grained control. Solution. Use an autonomous robot Provide various options for user to select from Use P300 to detect which option is selected. User Study.

By mandy
(189 views)

T. Asfour and R. Dillmann

T. Asfour and R. Dillmann

T. Asfour and R. Dillmann. Outline of the talk. The humanoid robot ARMAR-III Mechatronics Hardware architecture Software framework Implemented Skills • Object recognition and localization • Inverse Kinematics • Path Planning/Collision detection. Homework: Kinematic Model of the robot.

By newton
(74 views)

Renaissance Technology/Architecture

Renaissance Technology/Architecture

Renaissance Technology/Architecture. By: Dean Girardo, Nicolette Waldron, RJ Maroon, Rose Schuchard, Galvin Courtney, Lizzy Cimilluca, Margaret Ribardo, and Adam Baran. Horseless Carriage. Basic System Used Springs to propel gears Springs required to be wound up after each use

By xanti
(148 views)

Robotics

Robotics

Robotics. Robotics is the branch of technology Deals with the design, construction, operation Majority of robots use electric motors Robot, a mechanical or virtual agent Combination of electronics, mechanics and software Many benefits such as creativity, design ability.

By kobe
(306 views)

INVERSE KINEMATICS ANALYSIS TRAJECTORY PLANNING FOR A ROBOT ARM

INVERSE KINEMATICS ANALYSIS TRAJECTORY PLANNING FOR A ROBOT ARM

INVERSE KINEMATICS ANALYSIS TRAJECTORY PLANNING FOR A ROBOT ARM. Adviser : Ming-Yuan Shieh Student ID : M9920105 Student : Chun-Ming Su. Proceedings of 2011 8th Asian Control Conference Kaohsiung, Taiwan, May 15-18, 2011

By gwidon
(455 views)

Proxemics

Proxemics

Recognition of Spatial Dynamics for Predicting Social Interaction. The Inter action Lab. Ross Mead, Amin Atrash, Maja J Matarić {rossmead, atrash, mataric}@usc.edu. Proxemics

By quana
(250 views)

Why Humanoid Robots?*

Why Humanoid Robots?*

Why Humanoid Robots?*. By AVIK JAIN Baldevram Mirdha Institute of Technology. Outline. Motivation What is a Humanoid Anyway? History of Humanoid Robots Why Develop Humanoids? Challenges in Humanoids Bipedalism and Cognition Bipedal Locomotion Stability via ZMP

By psyche
(95 views)

Social & Ethical Issues with Robotos

Social & Ethical Issues with Robotos

Team Name: The Situation. Social & Ethical Issues with Robotos. Topics. Leslie – Effects Technology has on the Human Brain Elias - AI used in Ordinary Life Nick - Robotos Ethics in Engineering and AI Sergio - Asimo Robot Joel – AI Goes Hollywood. Presented by Leslie Duenas.

By moswen
(138 views)

History of Robotics

History of Robotics

History of Robotics. Early History. 4 th century BC – Aristotle came up with the original concept of automation. Def of automation – self moving machine constructed for the purpose of imitating the motions of men or animals.

By cachet
(388 views)

IDMEC

IDMEC

Humanoid Robot Control Architecture Pedro Teodoro, Mário Marques, Jorge Martins, Carlos Cardeira, Miguel Ayala-Botto, Limor Schweitzer, José Sá da Costa. IDMEC.

By sirius
(108 views)

System Integration and Experimental Results

System Integration and Experimental Results

Visual Perception and Robotic Manipulation Springer Tracts in Advanced Robotics. System Integration and Experimental Results. Chapter 7. Intelligent Robotics Research Centre (IRRC) Department of Electrical and Computer Systems Engineering Monash University, Australia. Geoffrey Taylor

By brenna
(111 views)

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