Javascript must be enabled to continue!
Tracking of Maneuvering Complex Extended Object with Coupled Motion Kinematics and Extension Dynamics Using Range Extent Measurements
View through CrossRef
The key to successful maneuvering complex extended object tracking (MCEOT) using range extent measurements provided by high resolution sensors lies in accurate and effective modeling of both the extension dynamics and the centroid kinematics. During object maneuvers, the extension dynamics of an object with a complex shape is highly coupled with the centroid kinematics. However, this difficult but important problem is rarely considered and solved explicitly. In view of this, this paper proposes a general approach to modeling a maneuvering complex extended object based on Minkowski sum, so that the coupled turn maneuvers in both the centroid states and extensions can be described accurately. The new model has a concise and unified form, in which the complex extension dynamics can be simply and jointly characterized by multiple simple sub-objects’ extension dynamics based on Minkowski sum. The proposed maneuvering model fits range extent measurements very well due to its favorable properties. Based on this model, an MCEOT algorithm dealing with motion and extension maneuvers is also derived. Two different cases of the turn maneuvers with known/unknown turn rates are specifically considered. The proposed algorithm which jointly estimates the kinematic state and the object extension can also be easily implemented. Simulation results demonstrate the effectiveness of the proposed modeling and tracking approaches.
Title: Tracking of Maneuvering Complex Extended Object with Coupled Motion Kinematics and Extension Dynamics Using Range Extent Measurements
Description:
The key to successful maneuvering complex extended object tracking (MCEOT) using range extent measurements provided by high resolution sensors lies in accurate and effective modeling of both the extension dynamics and the centroid kinematics.
During object maneuvers, the extension dynamics of an object with a complex shape is highly coupled with the centroid kinematics.
However, this difficult but important problem is rarely considered and solved explicitly.
In view of this, this paper proposes a general approach to modeling a maneuvering complex extended object based on Minkowski sum, so that the coupled turn maneuvers in both the centroid states and extensions can be described accurately.
The new model has a concise and unified form, in which the complex extension dynamics can be simply and jointly characterized by multiple simple sub-objects’ extension dynamics based on Minkowski sum.
The proposed maneuvering model fits range extent measurements very well due to its favorable properties.
Based on this model, an MCEOT algorithm dealing with motion and extension maneuvers is also derived.
Two different cases of the turn maneuvers with known/unknown turn rates are specifically considered.
The proposed algorithm which jointly estimates the kinematic state and the object extension can also be easily implemented.
Simulation results demonstrate the effectiveness of the proposed modeling and tracking approaches.
Related Results
Tracking of Multiple Maneuvering Random Hypersurface Extended Objects Using High Resolution Sensors
Tracking of Multiple Maneuvering Random Hypersurface Extended Objects Using High Resolution Sensors
With the increased resolution capability of modern sensors, an object should be considered as extended if the target extent is larger than the sensor resolution. Multiple maneuveri...
Is a Fitbit a Diary? Self-Tracking and Autobiography
Is a Fitbit a Diary? Self-Tracking and Autobiography
Data becomes something of a mirror in which people see themselves reflected. (Sorapure 270)In a 2014 essay for The New Yorker, the humourist David Sedaris recounts an obsession spu...
Deep learning-based motion analysis and object tracking
Deep learning-based motion analysis and object tracking
Detecting and tracking moving objects are vital tasks in computer vision, with broad applications in areas like surveillance, self-driving cars, and human-computer interaction. Ide...
The Effect of the Accuracy of Various Measuring Devices on Recorded Joint Kinematics
The Effect of the Accuracy of Various Measuring Devices on Recorded Joint Kinematics
Knowledge of joint kinematics contributes to the understanding of the function of soft tissue restraints, injury mechanisms, and can be used to evaluate surgical repair techniques....
Methodology to Define Design Motion Criteria for Performance of Floating LNG Process Facilities
Methodology to Define Design Motion Criteria for Performance of Floating LNG Process Facilities
Abstract
This paper proposes a generalized methodology to determine motion criteria for required performance of process facilities using the Abadi Floating LNG (A...
Maneuvering Behavior of Ships in Irregular Waves
Maneuvering Behavior of Ships in Irregular Waves
Ship maneuvering in waves is analyzed by using a unified seakeeping and maneuvering two-time scale model in irregular sea that has been applied by Skejic and Faltinsen [1] for regu...
Towards Haptic-Based Dual-Arm Manipulation
Towards Haptic-Based Dual-Arm Manipulation
Vision is the main component of current robotics systems that is used for manipulating objects. However, solely relying on vision for hand−object pose tracking faces challenges suc...
Gambaran Peningkatan Lingkup Gerak Sendi Setelah Pemberian Range Of Motion Pada Pasien Stroke : Literature Review
Gambaran Peningkatan Lingkup Gerak Sendi Setelah Pemberian Range Of Motion Pada Pasien Stroke : Literature Review
AbstrackStroke is a brain functional disorder that occurs suddenly with clinical signs and symptoms both focal and global that lasts more than 024 hours the event will cause perman...

