FANUC Robot Certification Practice Exam 2025 - Free FANUC Robot Practice Questions and Study Guide

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What does collision avoidance entail in robotic systems?

Enabling robots to move faster

Implementing strategies to prevent collisions during operation

Collision avoidance in robotic systems involves implementing strategies to prevent collisions during operation. This is crucial for ensuring the safety of both the robotic system and its surroundings. It requires the integration of sensors, algorithms, and control systems that allow robots to detect and respond to potential obstacles or other moving objects in their environment.

By employing methods such as real-time sensory data processing and path planning, robots are able to navigate effectively without colliding with obstacles. This capability is essential in applications ranging from industrial automation to service robots in dynamic environments, where unexpected objects or changes in the surroundings may occur.

The other choices suggest different aspects of robotic operation or control but do not directly address the essence of collision avoidance. Moving faster is not inherently related to avoiding collisions, as speed can often exacerbate the risk of collisions if not managed correctly. Restricting robots to a single task limits their versatility and does not contribute to collision prevention. Adjusting sensory input to ignore obstacles is contrary to the principles of collision avoidance, as it would prevent the robot from responding to actual dangers in its environment.

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Restricting robots to a single task

Adjusting sensory input to ignore obstacles

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