Usage
target.and.grad.spatiotemporal(Gamma, nis, cellarea, rootQeigs, invrootQeigs,
mu, spatial, logspat, temporal, bt, gt, gradtrunc)
Arguments
Gamma
current state of the chain, Gamma
cellarea
area of cells, a positive number
rootQeigs
square root of the eigenvectors of the precision matrix
invrootQeigs
inverse square root of the eigenvectors of the precision matrix
mu
parameter of the latent Gaussian field
spatial
spatial at risk function, lambda, interpolated onto correct grid
logspat
log of spatial at risk function, lambda*scaleconst, interpolated onto correct grid
temporal
fitted temoporal values
bt
in Brix and Diggle vector b(delta t)
gt
in Brix and Diggle vector g(delta t) (ie the coefficient of R in G(t)), with convention that (deltat[1])=Inf
gradtrunc
gradient truncation parameter