This paper presents procedures to design a minimum variance control for lev
eling slivers in a double-zone drafting process. We model a random sliver a
nd consider the drafting model as a stochastic system with a zero-mean whit
e noise process and a constant sequence representing the input-sliver mean
thickness. Such a model enables the proposed control algorithm not only to
smooth out the irregularity of the output sliver, but also to regulate the
mean thickness at the desired value. We develop the minimum variance contro
l applicable to our stochastic model based on an optimal predictor. Since s
ome parameters and the noise process are not exactly known, identification
is used to refine the model, and the control law is thus designed based on
the identified model. The simulation results demonstrate that the algorithm
can achieve goals by adjusting the speed of either the back or front rolle
r.