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A new approach to the single-channel loudspeaker equalization problem is presented. A scalar discrete-time mixed-phase precompensation filter is designed to be spatially robust, meaning that equalization performance should be insensitive to listener movements within a predefined spatial region. The problem is posed in a single-input multiple-output (SIMO) feedforward control framework and a polynomial...
This paper investigates the problem of global robust stabilization by state feedback, for a family of high order feedforward (upper-triangular) nonlinear systems with delayed input. The uncertain nonlinearities are assumed to satisfy a polynomial growth assumption with a constant growth rate. The designed controllers, which are continuous but not smooth feedbacks, could achieve global asymptotical...
A decentralized controller design methodology is presented for finite dimensional linear time-invariant systems within the framework of the model reference scheme. The design is performed in two stages: feedforward and feedback design. In the feedforward design the theory of A-generalized polynomials is used as presented in [1], [2]. In the feedback design the novel concept of robust block generalized...
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