References

1. A. Papoulis and S.U Pillai, Probability, Random Variables, and Stochastic Processes, fourth edition, McGraw-Hill, 2002.

2. P.Z. Peebles, Probability, Random Variables, and Random Signal Principles, fourth edition, McGraw-Hill, 2001.

3. C.W. Helstrom, Probability and Stochastic Processes for Engineers, second edition, Macmillan, 1991.

4. W.B. Davenport Jr and J.L. Root, An Introduction to the Theory of Random Signals and Noise, McGraw-Hill, 1958; reissue by IEEE Press, 1987.

5. K.S. Shanmugam and A.M. Breipohl, Random Signals: Detection, Estimation and Data Analysis, Wiley, 1988.

6. L.W. Couch II, Digital and Analog Communication Systems, sixth edition, Prentice-Hall, 2001.

7. A. Papoulis, The Fourier Integral and Its Applications, McGraw-Hill, 1962.

8. W. van Etten and J. van der Plaats, Fundamentals of Optical Fiber Communications, Prentice-Hall, 1991.

9. J. Proakis and M. Salehi, Communication Systems Engineering, second edition, Prentice-Hall, 2002.

10. H. Baher, Analog and Digital Signal Processing, second edition, Wiley, 2001.

11. S. Haykin, Communication Systems, fourth edition, Wiley, 2001.

12. A. Papoulis, Signal Analysis, McGraw-Hill, 1977.

13. A.B. Carlson, P.B. Crilly and J.C. Rutledge, Communication Systems, fourth edition, McGraw-Hill, 2002.

14. J.M. Wozencraft and I.M. Jacobs, Principles of Communication Engineering, Wiley, 1965.

15. C.W. Helstrom, Statistical Theory of Signal Detection, second edition, Pergamon, 1968.

16. L.A. Pipes, Applied Mathematics ...

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