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Pedro Miraldo

26 accepted papers

2026

LASER: Layer-wise Scale Alignment for Training-Free Streaming 4D Reconstruction

CVPR 2026

Recent feed-forward reconstruction models like VGGT and \pi^3 achieve impressive reconstruction quality but cannot process streaming videos due to quadratic memory complexity, limiting their practical deployment. While existing streaming methods address this through learned memory mechanisms or caus

Cited by 0SourcecodeScholar
2026

Point4Cast: Streaming Dynamic Scene Reconstruction and Forecasting

CVPR 2026

Understanding how the 3D world evolves over time is a fundamental task in computer vision, essential for embodied settings, autonomous driving, etc. It requires not only the reconstruction of the observed scene but also the anticipation of how the scene dynamics will unfold in the future. While the

Cited by 0SourceScholar
2025

RAPTR: Radar-based 3D Pose Estimation using Transformer

NeurIPS 2025poster

Radar-based indoor 3D human pose estimation typically relied on fine-grained 3D keypoint labels, which are costly to obtain especially in complex indoor settings involving clutter, occlusions, or multiple people. In this paper, we propose \textbf{RAPTR} (RAdar Pose esTimation using tRansformer) unde…

Cited by 0SourcecodeScholar
2025

SAC-GNC: SAmple Consensus for adaptive Graduated Non-Convexity

ICCV 2025poster

Outliers are ubiquitous in geometric vision contexts such as pose estimation and mapping, leading to inaccurate estimates. While robust loss functions can tackle outliers, it is challenging to make the estimation robust to the choice of initialization and to estimate the appropriate robust loss shap…

Cited by 0SourcePDFScholar
2024

Gear-NeRF: Free-Viewpoint Rendering and Tracking with Motion-aware Spatio-Temporal Sampling

CVPR 2024highlight

Extensions of Neural Radiance Fields (NeRFs) to model dynamic scenes have enabled their near photo-realistic free-viewpoint rendering. Although these methods have shown some potential in creating immersive experiences two drawbacks limit their ubiquity: (i) a significant reduction in reconstruction…

Cited by 4SourcePDFScholar
2023

Robust Frame-to-Frame Camera Rotation Estimation in Crowded Scenes

ICCV 2023poster

We present an approach to estimating camera rotation in crowded, real-world scenes from handheld monocular video. While camera rotation estimation is a well-studied problem, no previous methods exhibit both high accuracy and acceptable speed in this setting. Because the setting is not addressed well…

Cited by 1PDFScholar
2022

A Unified Model for Line Projections in Catadioptric Cameras With Rotationally Symmetric Mirrors

CVPR 2022poster

Lines are among the most used computer vision features, in applications such as camera calibration to object detection. Catadioptric cameras with rotationally symmetric mirrors are omnidirectional imaging devices, capturing up to a 360 degrees field of view. These are used in many applications rangi…

Cited by 4PDFcodeScholar
2020

3DRegNet: A Deep Neural Network for 3D Point Registration

CVPR 2020poster

We present 3DRegNet, a novel deep learning architecture for the registration of 3D scans. Given a set of 3D point correspondences, we build a deep neural network to address the following two challenges: (i) classification of the point correspondences into inliers/outliers, and (ii) regression of the…

Cited by 275PDFcodeScholar
2020

Active Depth Estimation: Stability Analysis and its Applications

ICRA 2020poster

Recovering the 3D structure of the surrounding environment is an essential task in any vision-controlled Structure-from-Motion (SfM) scheme. This paper focuses on the theoretical properties of the SfM, known as the incremental active depth estimation. The term incremental stands for estimating the 3…

Cited by 6SourceScholar
2020

Fast Model Predictive Image-Based Visual Servoing for Quadrotors

IROS 2020poster

This paper studies the problem of Image-Based Visual Servo Control (IBVS) for quadrotors. Although the control of quadrotors has been extensively studied in the last decades, combining the IBVS module with the quadrotor's dynamics is still hard, mainly due to the under-actuation issues related to th…

Cited by 21SourceScholar
2019

A Framework for Depth Estimation and Relative Localization of Ground Robots using Computer Vision

IROS 2019poster

The 3D depth estimation and relative pose estimation problem within a decentralized architecture is a challenging problem that arises in missions that require coordination among multiple vision-controlled robots. The depth estimation problem aims at recovering the 3D information of the environment.…

Cited by 10SourceScholar
2019

OmniDRL: Robust Pedestrian Detection using Deep Reinforcement Learning on Omnidirectional Cameras

ICRA 2019poster

Pedestrian detection is one of the most explored topics in computer vision and robotics. The use of deep learning methods allowed the development of new and highly competitive algorithms. Deep Reinforcement Learning has proved to be within the state-of-the-art in terms of both detection in perspecti…

Cited by 12SourceScholar
2019

POSEAMM: A Unified Framework for Solving Pose Problems using an Alternating Minimization Method

ICRA 2019poster

Pose estimation is one of the most important problems in computer vision. It can be divided in two different categories - absolute and relative - and may involve two different types of camera models: central and non-central. State-of-the-art methods have been designed to solve separately these probl…

Cited by 13SourceScholar
2018

A Minimal Closed-Form Solution for Multi-Perspective Pose Estimation using Points and Lines

ECCV 2018poster

We propose a minimal solution for pose estimation using both points and lines for a multi-perspective camera. In this paper, we treat the multi-perspective camera as a collection of rigidly attached perspective cameras. These type of imaging devices are useful for several computer vision application…

Cited by 35SourcePDFScholar
2018

Active Structure-from-Motion for 3D Straight LinesBehaviors* This work was partially supported by the Portuguese FCT grants PD/Bd/135015/2017 (through the NETSys Doctoral Program) & SFRH/BPD/111495/2015, and ISRILARSyS Strategic Funding by the FCT project PEst-OE/EEI/LA0009/2013

IROS 2018

A reliable estimation of 3D parameters is a must for several applications like planning and control, in which is included Image-Based Visual Servoing. This control scheme depends directly on 3D parameters, e.g. depth of points, and/or depth and direction of 3D straight lines. Recently, a framework f

Cited by 23SourceScholar
2018

Analytical Modeling of Vanishing Points and Curves in Catadioptric Cameras

CVPR 2018poster

Vanishing points and vanishing lines are classical geometrical concepts in perspective cameras that have a lineage dating back to 3 centuries. A vanishing point is a point on the image space where parallel lines in 3D space appear to converge, whereas a vanishing line passes through 2 or more vanish…

Cited by 9SourcePDFScholar
2018

Low-Level Active Visual Navigation: Increasing Robustness of Vision-Based Localization Using Potential Fields

RA-L 2018

This letter proposes a low-level visual navigation algorithm to improve visual localization of a mobile robot. The algorithm, based on artificial potential fields, associates each feature in the current image frame with an attractive or neutral potential energy, with the objective of generating a co

Cited by 28SourceScholar
2016

Efficient object search for mobile robots in dynamic environments: Semantic map as an input for the decision maker

IROS 2016poster

In this work we study the efficient search of objects in domestic environments, using probabilistic logic to represent uncertainty about object location and partially observable Markov decision processes (POMDP) for the decision-making process regarding the movements to be carried out by the robot t…

Cited by 19SourceScholar
2015

Augmented reality on robot navigation using non-central catadioptric cameras

IROS 2015poster

In this paper we present a framework for the application of augmented reality to a mobile robot, using non-central camera systems. Considering a virtual object in the world with known local 3D coordinates, the goal is to project this object into the image of a non-central catadioptric imaging device…

Cited by 8SourceScholar