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Tampilkan postingan dengan label robot. Tampilkan semua postingan

Robotics

Robotics



Energid provides expertise in robotic kinematics, dynamics, and control. Our specialty is bifurcating mechanisms, including kinematically redundant arms and walking and wheeled mobile robotics. We use augmented Jacobian control for kinematic reasoning.

Energid targets its innovative, patented technologies to mobile robot system design, autonomous robot control, remotely supervised operation in home and industrial settings, agricultural applications, medical robotic applications, and space exploration.

We believe legged walking machines present advantages over wheeled machines in rough terrain, providing greater mobility, better isolation from the terrain irregularities, and energy efficiency. These advantages make our locomotion controls advantageous for many emerging industrial robotics applications.

Energid provides expertise in industrial robotics kinematics, dynamics, and robot control. Our specialty is bifurcating mechanisms, including kinematically redundant arms and walking and wheeled mobile platforms. We use augmented Jacobian control for kinematic reasoning.

Remote supervision is a mode of operation where the robot is largely autonomous but receives periodic guidance from a remote human supervisor. We have created algorithms to identify geometric properties of objects in the remote environment, including geometry, dimensions, and orientation, for this purpose. For orientation conversion, click here.

Visual servoing robotic control will play an important role in manufacturing and agricultural applications. By combining robot arm control techniques with computer machine vision capabilities, Energid provides novel solutions in the field of robotic control.

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simulation

Simulation

Energid has decades of experiencebuilding state-of-the-art training, battlefield, and engineering virtual simulations. Our high-fidelity computer simulations are used in a wide variety of industries such as robotics, the military, medical, space and aviation. We have an array of visualization software that we can leverage to quickly develop and customize your 3D simulation solution. Energid has led research and development (R&D) efforts to integrate new technology into virtual simulation environments resulting in a dramatic increase in computer simulation realism and a richer learning environment. Our R&D efforts include haptics, dialog, agent technologies, and tutoring systems. Our staff also has experience in scientific visualization and graphics rendering, so we can develop immersive panoramic viewers or other specialty visualization setups. Through tailored training and education virtual simulations, Energid can improve the user's operational efficiency and ability to handle high-pressure situations. We work hard to capture accurate training environments and ensure our GUIs and 3D computer simulation functionality is tailored to each client's particular needs. Whether the application is an open surgery training system, a force-on-force battlefield virtual simulation, or a DoD war game training system, all of our training/education 3D simulations are realistic and allow users to exercise specific domain judgment and response skills.



Energid also has a history developing high-fidelity engineering computer simulations. We have in-depth experience developing missile virtual simulations, sensor system 3D simulations, and robotic control dynamic virtual simulations to facilitate preliminary product design, prototype development, and trade studies. As a result you can perform an accurate assessment of a design long before committing to expensive prototype testing. Using our engineering computer simulations, clients can quickly and effectively analyze a multitude of design options, and drive major design choices from the perspective of key performance attributes. This can save millions of dollars and valuable time when developing a new product.

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Actin control and simulation Toolkit pd Robot

Actin Control and Simulation Toolkit

Actin is a C++ software toolkit that simplifies robotic applications by providing easy access to powerful software components. Through Windows and Linux libraries, it supports simulating and controlling the most complex of mechanisms. Based on patented software developed for NASA, Actin provides coordinated control for fixed or mobile robots with up to 100 independent moving parts. The developer specifies the robot kinematics and desired behavior, and Actin produces algorithms for setting joint positions and rates to achieve specified hand motion.

With the Actin C++ software toolkit, roboticists are free to focus on what the robot does and where the hands and tools should be, not on how they get there. For mechanisms with many moving parts, hand and tool motion can be accomplished in an unlimited number of ways. Actin takes advantage of this kinematic redundancy for robot collision avoidance, joint limitation avoidance, and minimized motion and optimized strength in robotic control.

Through a configurable object-oriented design, the Actin software toolkit applies to many robot types. Running under Windows or Linux, it can control and simulate fixed-base manipulators, as would be typical for factory automation, and mobile manipulators, as would be appropriate for home entertainment. Actin works with almost any joint type or hand type and with a virtually unlimited number of degrees of freedom and branching connections.

For the latest advancements in C++ robotic control and simulation software for both Windows and Linux, check out Energid's Actin.

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