cs.ROSep 16, 2026

PIVOT: Perception-aware Independent Viewpoint Online Optimization

Authors: Yuyang ChenShekoufeh SadeghiCharuvahan AdhivarahanElton LemosChen WangSanjeev J. KoppalKarthik Dantu

Organizations: Department of Computer Science and Engineering, University at Buffalo, Buffalo, NY 14260, USA · Department of Electrical and Computer Engineering, University of Florida, Gainesville, FL 32603, USA

Abstract

A fundamental assumption in robotic perception is that the sensor's field of view (FoV) is fixed relative to the robot body. Motion-decoupled sensors, such as gimbal-mounted cameras and MEMS-based LiDARs, instead allow sensing direction to be controlled independently at runtime. This freedom creates a computational challenge: efficiently selecting useful viewing directions online in feature-dense environments. We propose PIVOT, a lightweight iterative method that optimizes sensor viewing direction along a fixed translation trajectory to maximize feature visibility. Under a conical FoV model, visibility depends only on the optical axis, yielding a two-degree-of-freedom optimization on the viewing sphere S2S^2. Coordinate-free SO(3)SO(3) exponential-map updates enable efficient continuous optimization without explicit angular parameterizations or exhaustive viewing-sphere search. Monte Carlo evaluations retain 98.1--99.6% of brute-force visibility with a 76--85x speedup. Photorealistic simulation and real-world experiments further demonstrate improved visual localization robustness and practical viewpoint control on a quadruped robot.

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