Return
Modeling Spatial Trajectories With Attribute Representation Learning
DOI:10.1109/TKDE.2020.3001025.png)
Abstract
En 中文
The widespread use of positioning devices has given rise to many trajectories, with each having three explicit attributes: user ID, location ID, and time-stamp and an implicit attribute: activity type (akin to topic in text mining). To model these trajectories, existing works learn different attribute representations by either introducing latent activity types based on topic models or transforming the location and time context into a low-dimensional space via embedding techniques. In this paper, we propose a holistic approach named Human Mobility Representation Model (HMRM) to simultaneously produce the vector representations of all four (explicit and implicit) attributes. The merits of HMRM lie in that: (1) it models the latent activity types and learns trajectory attribute embeddings in an integrated manner, and (2) it connects the activity-related distributions and these attributes embeddings by adding a newly designed collaborative learning component, and makes them mutually exchanged to take the best of both worlds. We apply HMRM to both unsupervised and supervised tasks including two activity evaluation tasks and two embedding evaluation tasks, on two real check-in datasets collected from Foursquare. Experimental results show that HMRM could not only improve the performance of capturing latent activity types, but also learn better trajectory embeddings.
Keywords:
Trajectory
Semantics
Tensors
Task analysis
Data models
Context modeling
Collaborative work
Human mobility representation model
attribute representation learning
activity modeling
trajectory embedding
collaborative learning
AI Summary
Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.
Journal
IF:
10.4
Papers:
6.8K
Citations:
3.2W
Organization
Cited Papers
Single session compared with multiple sessions of education and exercise
for older adults with spinal pain in an advanced practice physiotherapy
model of care: protocol for a randomised controlled trial
BMJ Open
IF0

