Moving object indexing and query processing is a well studied research topic, with applications in areas such as intelligent transport systems and location-based services. While much existing work explicitly or implicitly assumes a deterministic object movement model, real-world objects often move in more complex and stochastic ways. This paper investigates the possibility of a marriage between moving-object indexing and probabilistic object modelling. Given the distributions of the current locations and velocities of moving objects, we devise an efficient inference method for the prediction of future locations. We demonstrate that such prediction can be seamlessly integrated into existing index structures designed for moving objects, thus ...
With the recent advances in wireless networks, embedded systems and GPS technology, databases that m...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...
[[abstract]]Range queries for querying the current and future positions of the moving objects have r...
This dissertation challenges an unstudied area in moving objects database domains; predicting (long-...
Existing methods for prediction in spatio-temporal databases assume that objects move according to l...
Abstract — Existing prediction methods in moving objects databases cannot forecast locations accurat...
Existing methods for prediction in spatio-temporal databases assume that objects move according to l...
[[abstract]]Range queries for querying the current and future positions of the moving objects have r...
In moving: object environments, it is infeasible for the database tracking the movement of objects t...
With the emergence of an infrastructure that enables the geo-positioning of on-line, mobile users, t...
While location-aware services, both in professional and private context, are widely used today, not ...
relies on predictive queries which consider the anticipated future locations of users. Predictive qu...
University of Minnesota Ph.D. dissertation. August 2015. Major: Computer Science. Advisor: Mohamed M...
With the emergence of an infrastructure that enables the geo-positioning of on-line, mobile users, t...
With the recent advances in wireless networks, embedded systems and GPS technology, databases that m...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...
[[abstract]]Range queries for querying the current and future positions of the moving objects have r...
This dissertation challenges an unstudied area in moving objects database domains; predicting (long-...
Existing methods for prediction in spatio-temporal databases assume that objects move according to l...
Abstract — Existing prediction methods in moving objects databases cannot forecast locations accurat...
Existing methods for prediction in spatio-temporal databases assume that objects move according to l...
[[abstract]]Range queries for querying the current and future positions of the moving objects have r...
In moving: object environments, it is infeasible for the database tracking the movement of objects t...
With the emergence of an infrastructure that enables the geo-positioning of on-line, mobile users, t...
While location-aware services, both in professional and private context, are widely used today, not ...
relies on predictive queries which consider the anticipated future locations of users. Predictive qu...
University of Minnesota Ph.D. dissertation. August 2015. Major: Computer Science. Advisor: Mohamed M...
With the emergence of an infrastructure that enables the geo-positioning of on-line, mobile users, t...
With the recent advances in wireless networks, embedded systems and GPS technology, databases that m...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...
We put forth a system, to predict distant-future positions of multiple moving entities and index the...