< Back to situation

[REVISION HISTORY]

TU Delft tactile drone technology development

Updated 2 times since CLSTR started tracking revisions of this situation.

What changed

2026-09-21 03:04 UTC → 2026-09-21 06:28 UTC · added removed

Researchers at TU Delft have developed tactile sensing technologies for drones to improve navigation and stability in environments where visual perception is limited. Initial developments focused on a bird-inspired drone utilizing a three-fingered robotic gripper with soft tactile sensors. This system allows a drone to detect the position, orientation, and size of a landing surface through physical contact, enabling it to perch on branches or objects to conserve battery. Subsequent research introduced bio-inspired artificial whiskers, modeled after the vibrissae of rats and mice, for sub-50-gram drones. These flexible whiskers use miniature barometric sensors to detect pressure changes when contact is made, allowing drones to navigate through darkness, smoke, or dust by sensing the position and depth of surfaces in three dimensions. Recent refinements to advancements, published in Nature Communications, have refined this whisker-based system emphasize its efficiency for small-scale robotics. using two 200mm Nitinol whiskers equipped with miniature barometric pressure sensors at their base. This hardware allows drones weighing less than 100 grams to estimate their position and depth in three dimensions with a mean error of approximately 9.18 millimeters. The sensing and navigation pipeline runs remains highly efficient, running entirely onboard a microcontroller using minimal only 34 KB of memory. This allows the drone enables drones to avoid obstacles, follow contours, avoid obstacles, and map build tactile maps of enclosed spaces in visually ambiguous or low-power environments, offering significant potential applications in for search and rescue operations in hazardous locations such as collapsed buildings or navigating complex, dark structures. underground tunnels.

Versions

  1. 2026-09-21 06:28 UTC TU Delft tactile drone technology development
  2. 2026-09-21 03:04 UTC TU Delft tactile drone technology development
  3. 2026-09-20 01:40 UTC TU Delft tactile drone technology development

Only revisions since CLSTR began indexing content versions appear here. Select a version to see what changed compared to the one before it.