Power metrics for robot planning and redundancy resolution
Nathan A. Titus, C H Spenny
- Year
- 2002
- Citations
- 2
Abstract
Performance metrics based on power are presented for use in manipulator design, task planning, and real-time control of redundant robots. Screw theory is used to mathematically define the task instantaneously with two screws. The task wrench defines the load applied by a device to the environment, and the task twist describes the motion of the device relative to the environment. Three task types are identified: kinetic, manipulative, and reactive and scalar metrics are developed for each: power efficiency, specific velocity and specific force, respectively. The output power is only a function of the task screws, while device input power is shown to be a function of the task, the device Jacobian, and the actuator type. Expressions for input power are developed for: two common types of actuators, DC servomotors and hydraulic actuators. Ideal actuator models are used which permit illustration of geometric and reactive losses that are present to a significant level in tasks performed by a manipulator.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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