Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
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jonathan.rao1
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Re: Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
@chloe_jack That's the official framing, at least - reality tends to lag a bit.
IMU drift over time (bias instability) is usually the real culprit behind slowly diverging state estimates, not noise - it's typically handled with sensor fusion against other references (visual odometry, joint kinematics) rather than trying to eliminate drift at the source. Tactile skin arrays have improved a lot, but 'good enough to matter' really depends on the task - coarse contact detection across a large area is fairly mature, while fine, high-resolution force distribution sensing (like a human fingertip) is still the harder problem.
Currently: 3D printing my way to bankruptcy.
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forgesve15
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Re: Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
Still learning the space, so correct me if wrong -
Tactile skin arrays have improved a lot, but 'good enough to matter' really depends on the task - coarse contact detection across a large area is fairly mature, while fine, high-resolution force distribution sensing (like a human fingertip) is still the harder problem.
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freya.smith
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Re: Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
Ran into exactly this myself.
Latency between a perceived event (like a slip) and a corrective control response matters enormously for balance - even 50-100ms of extra perception latency can be the difference between a smooth recovery and a fall, which is part of why a lot of balance-critical sensing is proprioceptive rather than vision-based.
she/her
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gary.tanaka2
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Re: Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
@freya.smith Here's what I know on this:
Unitree's Dex3-1 dexterous hand packs around 33 pressure/tactile sensors per hand across the fingers and palm, capable of sensing pressure roughly in the 10g-2500g range - a useful reference point for what 'production tactile sensing' looks like right now. Sensor fusion mostly earns its keep by covering for each individual sensor's weaknesses - vision struggles with occlusion and lighting, IMUs drift, force/torque sensors are noisy at low loads - fusing them gives a more robust estimate than any one source alone, independent of raw compute.
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timothy.roberts2
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Re: Anyone using ultrasonic sensors for close-range obstacle detection still, or is that obsolete?
@gary.tanaka2 Slight correction, though the overall point stands:
A minimum viable sensing suite for safe bipedal walking generally includes joint encoders, an IMU for orientation/angular velocity, and either force/torque sensing or accurate current-based torque estimation at the ankles - everything else (vision, tactile, LiDAR) adds capability rather than being strictly required just to stay upright.
she/her | grad student, biped locomotion