Although animal locations gained via GPS, etc. are typically observed on a discrete time scale, movement models formulated in continuous time are preferable in order to avoid the struggles experienced in discrete time when faced with irregular observations or the prospect of comparing analyses on different time scales. A class of models able to emulate a range of movement ideas are defined by representing movement as a combination of stochastic processes describing both speed and bearing. A method for Bayesian inference for such models is described through the use of a Markov chain Monte Carlo approach. Such inference relies on an augmentation of the animal’s locations in discrete time that have been observed with error, with a more detaile...
Recent developments in animal tracking technology have permitted the collection of detailed data on ...
This article presents a new approach to modeling group animal movement in continuous time. The movem...
Improved communication systems, shrinking battery sizes and the price drop of tracking devices have...
Although animal locations gained via GPS, etc. are typically observed on a discrete time scale, move...
Mechanistic modelling of animal movement is often formulated in discrete time despite problems with ...
It is natural to regard most animal movement as a continuous-time process, generally observed at dis...
It is natural to regard most animal movement as a continuous-time process, generally observed at dis...
This thesis concerns the statistical modelling of animal movement paths given observed GPS locations...
Movement is an essential process for almost all species in the animal kingdom. For example, survival...
The study of animal movement is challenging because movement is a process modulated by many factors ...
Continuous‐time models have been developed to capture features of animal movement across temporal sc...
Satellite tracking provides an opportunity to learn about how animals choose to move and about the ...
1. Bayesian state-space movement models have been proposed as a method of inferring behavioural stat...
We describe a flexible class of stochastic models that aim to capture key features of realistic patt...
Recent developments in animal tracking technology have permitted the collection of detailed data on ...
This article presents a new approach to modeling group animal movement in continuous time. The movem...
Improved communication systems, shrinking battery sizes and the price drop of tracking devices have...
Although animal locations gained via GPS, etc. are typically observed on a discrete time scale, move...
Mechanistic modelling of animal movement is often formulated in discrete time despite problems with ...
It is natural to regard most animal movement as a continuous-time process, generally observed at dis...
It is natural to regard most animal movement as a continuous-time process, generally observed at dis...
This thesis concerns the statistical modelling of animal movement paths given observed GPS locations...
Movement is an essential process for almost all species in the animal kingdom. For example, survival...
The study of animal movement is challenging because movement is a process modulated by many factors ...
Continuous‐time models have been developed to capture features of animal movement across temporal sc...
Satellite tracking provides an opportunity to learn about how animals choose to move and about the ...
1. Bayesian state-space movement models have been proposed as a method of inferring behavioural stat...
We describe a flexible class of stochastic models that aim to capture key features of realistic patt...
Recent developments in animal tracking technology have permitted the collection of detailed data on ...
This article presents a new approach to modeling group animal movement in continuous time. The movem...
Improved communication systems, shrinking battery sizes and the price drop of tracking devices have...