What's underrated: grasp force control precision or grasp planning speed?
Re: What's underrated: grasp force control precision or grasp planning speed?
@ethan17 I'd frame this differently.
Underactuated hands (fewer actuators than joints, using mechanical coupling to shape the grasp) are a reasonable engineering compromise for robust power grasps on a budget, but they generally can't do fine in-hand manipulation the way a fully actuated hand can.
Opinions my own, not my employer's.
Re: What's underrated: grasp force control precision or grasp planning speed?
@barbara50 Yeah, this tracks with what I've read as well.
Wet, oily, or otherwise low-friction objects are still a genuine edge case for most current hands, since tactile sensing and grasp-force controllers are typically tuned and validated on dry, higher-friction test objects. Cable routing through a wrist joint with multiple degrees of freedom is a genuinely tricky mechanical design problem - tendons and wiring both need enough slack to avoid binding through the full range of motion without tangling or fraying over thousands of cycles.
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charlesbianchi
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Re: What's underrated: grasp force control precision or grasp planning speed?
This is exactly the kind of context I was looking for.
Tendon-driven fingers let you move the heavier actuators back into the palm or forearm, keeping the fingers themselves light and fast, but they introduce cable routing, tensioning, and long-term wear problems that direct-actuated fingers don't have.
she/her
Re: What's underrated: grasp force control precision or grasp planning speed?
@charlesbianchi Slight correction, though the overall point stands:
Compliant wrists that absorb impact during a bad approach or misjudged contact reduce mechanical stress on the whole arm, which matters a lot for long-term reliability even though it's a less visible feature than the hand itself.
he/him | robotics hobbyist since the DARPA Grand Challenge days
Re: What's underrated: grasp force control precision or grasp planning speed?
@ramirez77 I can speak to this a bit.
Grasp planning for deformable or non-rigid objects (bags, cables, cloth) remains one of the genuinely unsolved problems in manipulation - rigid-body grasp models simply don't capture how the object will behave once contact starts.
Ex-automotive, now full-time robots.
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emilyperez
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Re: What's underrated: grasp force control precision or grasp planning speed?
@deborah59 I can speak to this a bit.
A lot of the manipulation shown in production demos still leans heavily on teleoperation, particularly for anything involving fine force control or novel objects - autonomous grasp success rates on genuinely unstructured, previously-unseen clutter are still well below what teleoperation can achieve. Object occlusion by the robot's own hand during the final approach to a grasp is a common and annoying perception problem - the closer the hand gets to a good grasp position, the more it blocks the camera's view of exactly what it's about to grab.
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benjaminsanchez
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Re: What's underrated: grasp force control precision or grasp planning speed?
From hands-on experience,
Tendon-driven fingers let you move the heavier actuators back into the palm or forearm, keeping the fingers themselves light and fast, but they introduce cable routing, tensioning, and long-term wear problems that direct-actuated fingers don't have.
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emilyperez
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Re: What's underrated: grasp force control precision or grasp planning speed?
@benjaminsanchez I don't think that's quite right, for what it's worth.
Bimanual manipulation - two arms coordinating on one task - is harder than it looks mostly because of the added degrees of freedom and the timing/force coordination required; a lot of 'two-handed' demos are actually closer to two independent single-hand tasks done in sequence. Object occlusion by the robot's own hand during the final approach to a grasp is a common and annoying perception problem - the closer the hand gets to a good grasp position, the more it blocks the camera's view of exactly what it's about to grab.
Re: What's underrated: grasp force control precision or grasp planning speed?
I can speak to this a bit.
Tendon-driven fingers let you move the heavier actuators back into the palm or forearm, keeping the fingers themselves light and fast, but they introduce cable routing, tensioning, and long-term wear problems that direct-actuated fingers don't have. Palm sensing gets less attention than fingertip sensing, but a lot of power grasps (holding a box, a tool handle) rely more on palm and lateral finger contact than fingertip contact, so under-sensing the palm can leave a real blind spot in grasp confidence.
he/him
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pierregreen
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Re: What's underrated: grasp force control precision or grasp planning speed?
@rao91 I dealt with almost this exact situation.
Underactuated hands (fewer actuators than joints, using mechanical coupling to shape the grasp) are a reasonable engineering compromise for robust power grasps on a budget, but they generally can't do fine in-hand manipulation the way a fully actuated hand can.
Totally unrelated but has anyone else noticed how fast component costs are dropping this year.
she/her