National Instruments NI MATRIX Xmath Robust Control Module Computer Accessories User Manual


 
© National Instruments Corporation A-1 MATRIXx Xmath Robust Control Module
A
Bibliography
[BBK88] S. Boyd, V. Balakrishnan, and P. Kabamba. “A bisection method for computing the
L
norm of a transfer matrix and related problems.” Mathematical Control Signals,
Systems Vol. 2, No. 3, pp 207–219, 1989.
[BeP79] A. Berman and R.J. Plemmons. “Nonnegative Matrices in the Mathematical
Sciences.” Computer Science and Applied Mathematics Series, Academic
Press, 1979.
[BoB90] S. Boyd and V. Balakrishnan. “A regularity result for the singular values of a transfer
matrix and a quadratically convergent algorithm for computing its L
norm.”
Systems Control Letters, Vol. 15, pp 1–7, 1990.
[BoB91] S. Boyd and C. Barratt. Linear Controller Design: Limits of Performance.
Prentice-Hall, 1991.
[BH69] A.E. Bryson and Y.C. Ho. Applied Optimal Control, p 149. Blaisdell
Publishing Co., 1969.
[DoS79] J.C. Doyle and G. Stein. “Robustness with Observers.” IEEE Transactions on
Automatic Control, August 1979.
[DoS81] J.C. Doyle and G. Stein. “Multivariable Feedback Design: Concepts for a
Classical/Modern Synthesis.” IEEE Transactions on Automatic Control,
Vol. AC-26, pp 4–16, February 1981.
[Doy82] J.C. Doyle. “Analysis of Feedback Systems with Structured Uncertainties.”
IEEE Proceedings, November 1982.
[DWS82] J.C. Doyle, J.E. Wall, and G. Stein. “Performance and Robustness Analysis for
Structure Uncertainties.” Proceedings IEEE Conference on Decision and Control,
pp 629–636, 1982.