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Comprehensive introduction to analysis of continuous and discrete-time signals and systems. Linear time-invariant systems, convolution; Fourier series representations of periodic signals; Continuous ...
Signals and systems theory is a tough topic. Terms like convolution and impulse response can be hard to understand on a visceral level and most books that talk about these things emphasize math ...
A new semiconductor chip fabricates miniature lenses on the chip to perform calculations using light instead of electricity, ...
A team at the University of Florida has developed a new kind of computer chip that uses light with electricity to perform one ...
It covers the solving of convolution integrals and differential equations, the transformation of signals to Fourier series, the Fourier and Laplace transforms, with their application, in continuous ...
Artificial intelligence is consuming enormous amounts of energy, but researchers at the University of Florida have built a ...
Linear translation invariant systems (e.g., sensors, linear filters) are modeled by the convolution equation s = f * μ, where f is the input signal, μ is the system impulse response function (or, more ...
Researchers at the University of Florida have created a silicon photonic chip that uses light to perform AI computations, ...
A study of signals and linear systems and their applications in modern engineering. Representation of continuous and discrete time signals and systems in the time and frequency domains. Stability, ...