Page 3 of 3
Re: What sensor suite would you consider the bare minimum for safe bipedal walking?
Posted: Sun Aug 30, 2026 11:59 am
by brenda52
@mia_lars Here's the relevant bit as far as I understand it:
Vibration is one of the most underrated sources of noisy IMU and tactile readings - mounting matters as much as sensor quality, and a poorly isolated mount can add more noise than the sensor's own datasheet specs would suggest. 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.
Re: What sensor suite would you consider the bare minimum for safe bipedal walking?
Posted: Sun Aug 30, 2026 11:59 am
by charlesbianchi
Slight correction, though the overall point stands:
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. Force/torque sensors near the ankle give a direct read on ground reaction forces, which is valuable for balance control, but they add cost, a failure point, and routing complexity right at a joint that already takes the most mechanical abuse.
Re: What sensor suite would you consider the bare minimum for safe bipedal walking?
Posted: Sun Aug 30, 2026 11:59 am
by jlefebvre
Yeah, this tracks with what I've read as well.
Depth sensing range and reliability both degrade outdoors in direct sunlight for most structured-light and active stereo cameras, since the ambient IR washes out the projected pattern - it's a real limitation for humanoids intended for anything beyond indoor, controlled environments. 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.