[1] G. D. Forney: 
Minimal bases of rational vector spaces with applications to multivariable linear systems. SIAM J. Control Optim. 13 (1975), 493 - 520. 
MR 0378886 | 
Zbl 0269.93011[2] B. K. Ghosh, C. I. Byrnes: 
Simultaneous stabilisation and simultaneous pole placement by non-switching dynamic compensation. IEEE Trans. Automat. Control AC-28 (1983), 735-741. 
MR 0713900[3] R. E. Kalman: On the general theory of control systems. In: Proc. 1st IFAC Congress Automat. Control, Moscow 1960, 4, pp. 481-492.
[4] N. Karcanias: Matrix Equations over Principal Ideal Domains. City Univ., Control Engin. Centre Research Report, London 1987.
[5] N. Karcanias, E. Milonidis: Total finite settling time stabilisation for discrete time SISO systems. IMA Control Theory Conf. Univ. of Strathclyde, Glasgow 1988.
[6] V.  Kučera: The structure and properties of time-optimal discrete linear control. IEEE Trans. Automat. Control AC-16 (1971), 375-377.
[7] V. Kučera: 
Discrete Linear Control: The Polynomial Equation Approach. J. Wiley, New York 1979. 
MR 0573447[8] V. Kučera: 
Polynomial design of dead-beat control laws. Kybernetika 16 (1980), 198-203. 
MR 0575425[9] E. Milonidis, N. Karcanias: Total Finite Settling Time Stabilisation for Discrete Time MIMO systems. City University, Control Engineering Centre, Research Report CEC/ EM-NK/101, London 1990.
[10] R. Saeks, J. Murray: 
Fractional representation, algebraic geometry, and the simultaneous stabilisation problem. IEEE Trans. Automat. Control AC-27 (1982), 4, 895 - 903. 
MR 0680490[11] M. Vidyasagar: 
Control System Synthesis: A Factorization Approach. MIT Press, Boston, Mass. 1985. 
MR 0787045 | 
Zbl 0655.93001[12] Y. Zhao, H. Kimura: 
Multivariate dead-beat control with robustness. Internat. J. Control 47 (1988), 229-255. 
MR 0929737