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Ortigueira, M.  2002.  A new approach to the initial value problem. 5th Portuguese Conference on Automatic Control. :377–382. Abstract
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Ricardo, CN, Inácio JA, Gerald JA, Ortigueira MD.  2003.  New BCH-Derived Sequences for CDMA Systems. 46th IEEE - Midwest Symposium on Circuits and Systems. :1255–1258. Abstract

New BCH-derived PN-EB (pseudo-noise even balanced) sequences suitable to be used in CDMA systems are presented in this paper. It is assumed a new definition for processing gain, which better accounts for the system performance regarding the narrow band noise rejection, and it is shown how to obtain high processing gain values, namely, by using zero mean spreading signals in channels with selective noise. The new sequences have low autocorrelation levels, exist in large numbers and can provide higher processing gain with selective noise.

Ortigueira, M, Serralheiro AJ.  2004.  New Insights into Pseudo-Fractional ARMA Modelling, September. International Conference on Computacional Cybernetics. Abstract
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Ortigueira, MD, Serralheiro AJ.  2006.  A new least-squares approach to differintegration modeling, October. Signal Processing. 86:2582–2591., Number 10: Elsevier AbstractWebsite

In this paper a new least-squares (LS) approach is used to model the discrete-time fractional differintegrator. This approach is based on a mismatch error between the required response and the one obtained by the difference equation defining the auto-regressive, moving-average (ARMA) model. In minimizing the error power we obtain a set of suitable normal equations that allow us to obtain the ARMA parameters. This new LS is then applied to the same examples as in ?R.S. Barbosa, J.A. Tenreiro Machado, I.M. Ferreira, Least-squares design of digital fractional-order operators, FDA'2004 First IFAC Workshop on Fractional Differentiation and Its Applications, Bordeaux, France, July 19-21, 2004, P. Ostalczyk, Fundamental properties of the fractional-order discrete-time integrator, Signal Processing 83 (2003) 2367-2376? so performance comparisons can be drawn. Simulation results show that both magnitude frequency responses are essentially identical. Concerning the modeling stability,both algorithms present similar limitations, although for different ARMA model orders.

Ortigueira, M.  2005.  A new look at the differintegration definition, August. ENOC-2005, Fifth EUROMECH Nonlinear Dynamics Conference. Abstract
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Ortigueira, MD, Batista AG.  2008.  A new look at the fractional Brownian motion definition, September. Sixth International Conference on Multibody Systems, Nonlinear Dynamics and Control (MSNDC), ASME IDETC07. Abstract
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Ortigueira, MD, Batista AG.  2007.  A new look at the fractional Brownian motion definition. Conference on Multibody Systems, Nonlinear Dynamics and Control (MSNDC). : ASME IDETC07 Abstract
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Inácio, JA, Gerald JA, Ortigueira M.  2005.  New PN Even Balanced Sequences for spread spectrum systems. EURASIP Journal on Wireless Communications and Networking. 2005:447–458., Number 3: Hindawi AbstractWebsite
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Ricardo, CNE, Ortigueira MD, Gerald JAB.  2007.  New quasi-orthogonal BCH-derived sequences for CDMA applications. European Transactions on Telecommunications. 18:803–810., Number 7: John Wiley & Sons, Ltd. AbstractWebsite

Based on two methods recently proposed - the Ranging Criterion (RC) and the Generators Ranging Criterion (GRC) - new (quasi-orthogonal) even BCH-derived sequences are generated which are very attractive for synchronous or quasi-synchronous Code Division Multiple-Access (CDMA) systems. Numerical results show that the new family of BCH-derived sequences can contain a higher number of quasi-orthogonal sequences with lower correlation values and higher processing gains (PGs) than the spreading sequences typically used in the third generation of mobile communications system, UMTS or in the recent large area synchronised CDMA (LAS-CDMA) technology. It is shown that the even BCH-derived sequences are easily generated by a linear shift register generator, allowing the construction of systems with receiver structures of low complexity as compared with those of quasi-synchronous systems using low correlation zone sequences, as for instance the LAS-CDMA system.

Ortigueira, M.  2003.  A new symmetric fractional B-spline, November. Signal Processing. 83:2311–2318., Number 11: Elsevier AbstractWebsite
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Ortigueira, M.  2007.  A Non Integer Order Quantum Derivative. Symposium on Applied Fractional Calculus (SAFC07). Abstract
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Oliveira, R, Pita H, Coito F, Steiger-Gar{\c c}ão A.  2002.  O projecto OCTOPUS: O módulo Reconhecedor de Zonas Oxidadas–. 60: Jornadas de Engenharia de Telecomunica{\c c}ões e Computadores-ISEL Lisboa, Portugal Abstract

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Ortigueira, M, Batista A.  2006.  On the fractional derivative of stationary stochastic processes, September. CST2006 & ECT2006 Conferences. Abstract
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Ortigueira, MD, Batista AG.  2006.  On the fractional derivative of stationary stochastic processes. CST2006 & ECT2006 Conferences. Abstract
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Ortigueira, MD.  2010.  On the Fractional Linear Scale Invariant Systems. IEEE Transactions on Signal Processing. 58:6406–6410., Number 12 AbstractWebsite

The linear scale invariant systems are introduced for both integer and fractional orders. They are defined by the generalized Euler-Cauchy differential equation. The quantum fractional derivatives are suitable for dealing with this kind of systems, allowing us to define impulse response and transfer function with the help of the Mellin transform. It is shown how to compute the impulse responses corresponding to the two half plane regions of convergence of the transfer function.

Magin, R, Ortigueira MD, Podlubny I, Trujillo J.  2011.  On the fractional signals and systems. Signal Processing. 91:350–371., Number 3: Elsevier AbstractWebsite

A look into fractional calculus and its applications from the signal processing point of view is done in this paper. A coherent approach to the fractional derivative is presented, leading to notions that are not only compatible with the classic but also constitute a true generalization. This means that the classic are recovered when the fractional domain is left. This happens in particular with the impulse response and transfer function. An interesting feature of the systems is the causality that the fractional derivative imposes. The main properties of the derivatives and their representations are presented. A brief and general study of the fractional linear systems is done, by showing how to compute the impulse, step and frequency responses, how to test the stability and how to insert the initial conditions. The practical realization problem is focussed and it is shown how to perform the input?ouput computations. Some biomedical applications are described.

Rato, RT, Ortigueira M, Batista A.  2008.  On the HHT, its problems, and some solutions, August. Mechanical Systems and Signal Processing. 22:1374–1394., Number 6: Elsevier AbstractWebsite

The empirical mode decomposition (EMD) is reviewed and some questions related to its effective performance are discussed. Its interpretation in terms of AM?FM modulation is done. Solutions for its drawbacks are proposed. Numerical simulations are carried out to empirically evaluate the proposed modified EMD.

Rato, RT, Ortigueira MD, Batista AG.  2008.  On the HHT, its problems, and some solutions. Mechanical Systems and Signal Processing. :1374–1394. Abstract
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Ortigueira, M.  2003.  On the initial conditions continuous-time fractional linear systems. Signal Processing. 83:2301–2309., Number 11: Elsevier AbstractWebsite
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Ortigueira, MD.  2009.  On the Linear Scale Fractional Systems: An Application of the Fractional Quantum Derivative. On the Linear Scale Fractional Systems: An Application of the Fractional Quantum Derivative. Abstract
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Ortigueira, MD, Batista AG.  2008.  On the relation between the fractional Brownian motion and the fractional derivatives. Physics Letters. A:958–968. Abstract
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Pereira, P, Fino H, Coito F, Ventim-Neves M.  2012.  Optimization-Based Design of Nano-CMOS LC-VCOs. Technological Innovation for Value Creation. :453–464.: Springer Boston Abstract

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Leal, A, Ferreira JC, Dias AI, Calado E.  2008.  Origin of frontal lobe spikes in the early onset benign occipital lobe epilepsy (Panayiotopoulos syndrome). Clinical Neurophysiology. 119:1985-1991.