Hardware architecture for positive definite matrix inversion based on LDL decomposition and back-substitution
Carl Ingemarsson, Oscar Gustafsson · 2016
In this paper we propose an efficient hardware architecture for computation of matrix inversion of positive definite matrices. The algorithm chosen is LDL decomposition followed directly by equation system solving using back substitution. The architecture combines a high throughput with an efficient utilization of its hardware units. We also report FPGA implementation results that show that the architecture is well tailored for implementation in real-time applications.