Kate Sanders
Papers
5
Total Citations
65
H-Index
4
About
Kate Sanders is a roboticist whose research focuses on the intersection of manipulation, perception, and automation, with key contributions in adaptive gripping, mechanical search, and robust bin picking. Her most cited work, "A Multi-Chamber Smart Suction Cup for Adaptive Gripping and Haptic Exploration" (28 citations), introduces a novel end-effector that uses multiple air chambers and pressure transducers to enable both gripping and tactile sensing through suction flow monitoring—a breakthrough for handling delicate or irregular objects. In "Mechanical Search on Shelves using Lateral Access X-RAY" (21 citations), Sanders tackles the challenging problem of finding occluded objects in lateral-access environments like warehouses and retail shelves, introducing the LAX-RAY system to maximize search efficiency. Her research on "Non-Markov Policies to Reduce Sequential Failures in Robot Bin Picking" (8 citations) addresses a critical bottleneck in e-commerce automation by developing policies that learn from past failures to improve grasp reliability. Sanders’ work is highly impactful for real-world automation, bridging the gap between theoretical grasping algorithms and practical, robust systems for warehouses, healthcare, and homes. Her innovative suction cup design and lateral search methods are shaping the next generation of adaptive, failure-resilient robots.
Research Focus
Key Achievements
Top Papers
- 1
- 2Mechanical Search on Shelves using Lateral Access X-RAY21 citations · 2021
- 3Non-Markov Policies to Reduce Sequential Failures in Robot Bin Picking8 citations · 2020
- 4Robust Task-Based Grasping as a Service6 citations · 2020
- 5Mechanical Search on Shelves using Lateral Access X-RAY2 citations · 2020