Monocular-Based SLAM for Mobile Robots: Filtering-Optimization Hybrid Approach

被引:0
作者
Rodrigo Munguia
Juan-Carlos Trujillo
Guillermo Obregón-Pulido
Carlos I. Aldana
机构
[1] CUCEI University of Guadalajara,Department of Computer Science
[2] CUCEI University of Guadalajara,Department of Electro
来源
Journal of Intelligent & Robotic Systems | 2023年 / 109卷
关键词
SLAM; Monocular vision; Mobile robots; Hybrid; Filters; Optimization;
D O I
暂无
中图分类号
学科分类号
摘要
The SLAM or Simultaneous Localization and Mapping still remains one of the most important problems to be fully addressed in the path to building fully autonomous mobile robots. This work aims to contribute to the above objective by presenting a novel hybrid architecture for implementing monocular-based SLAM systems for mobile robots. The key idea is to take advantage in a complementary manner of the inherent properties of the two main methodologies available today for implementing visual-based SLAM systems: the filter-based methods, and the optimization-based methods. The proposed method differs from previous approaches among other aspects because filter-based and optimization-based functionalities run concurrently in separate processes, improving the modularity and robustness of the system due to a degree of redundancy. Also, due to its modularity, the proposed approach can be easily applied to different mobile robot platforms using a monocular camera as its main sensor and different setups of additional sensors. In this sense, experiments with real data obtained from a differential robot and a quadrotor are presented to show that the proposed SLAM system can perform well in out-of-the-lab environments by using low-cost sensors. The experiments also show that the SLAM system exhibits real-time and stable computational performance. Moreover, a ROS-2 C++ open-source implementation of the proposed system is provided.
引用
收藏
相关论文
共 100 条
[1]  
Jiang D(2021)Manipulator grabbing position detection with information fusion of color image and depth image using deep learning J. Ambient. Intell. Humaniz. Comput. 12 10809-10822
[2]  
Parikh P(2023)Design and development of a low-cost vision-based 6 dof assistive feeding robot for the aged and specially-abled people IETE J. Res. 0 1-29
[3]  
Trivedi R(2021)Real-time performance comparison of vision-based autonomous landing of quadcopter on a ground moving target IETE J. Res. 0 1-18
[4]  
Dave J(2020)Motion path planning of soccer training auxiliary robot based on genetic algorithm in fixed-point rotation environment J. Ambient. Intell. Humaniz. Comput. 11 6261-6270
[5]  
Joshi K(2020)Three-dimensional reconstruction of the dribble track of soccer robot based on heterogeneous binocular vision J. Ambient. Intell. Humaniz. Comput. 11 6361-6372
[6]  
Adhyaru D(2023)Design of hybrid neural controller for nonlinear mimo system based on narma-l2 model IETE J. Res. 69 3038-3051
[7]  
Kumar A(2022)Visual-thermal fusion-based object tracking via a granular computing backed particle filtering IETE J. Res. 0 1-16
[8]  
Ding H(2020)Visual tracking using kernelized correlation filter with conditional switching to median ow tracker IETE J. Res. 66 427-438
[9]  
Tong C(2020)Robot target localization and interactive multi-mode motion trajectory tracking based on adaptive iterative learning J. Ambient. Intell. Humaniz. Comput. 11 6271-6282
[10]  
Hamidi KE(2022)Artificial intelligence-based robust hybrid algorithm design and implementation for real-time detection of plant diseases in agricultural environments Biology 11 1732-1375