Title :
Paral lel VLSI Implementation of the Kalrman Filter
Author :
Sung, Tze Yun ; Hu, Yu Hen
fDate :
3/1/1987 12:00:00 AM
Abstract :
The problem of parallel implementation of the square-root Kalman filters is addressed. At the system level, our approach is to apply systolic-type VLSI processor arrays as basic building blocks to accelerate the matrix operations required in each iteration. To maximize the parallelism, we also exploit an inter-array pipelining scheme through the overlapping of execution between successive processor arrays. We estimate that with (5n2 + r2 + 8nr + n + 3r)/2 processors, it would take max[(4n + 2r, 2n + 4r-2)] time units to complete one Kalman filter iteration, where n is the dimension of the underlying state space model and r is the dimension of the input vector.
Keywords :
Acceleration; Concurrent computing; Covariance matrix; Filters; Parallel processing; Pipeline processing; State estimation; State-space methods; Time measurement; Very large scale integration;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
DOI :
10.1109/TAES.1987.313375