Oscillations in nonlinear systems underlie phenomena from chemical waves to neural rhythms. Such oscillations in noisy environments incur thermodynamic dissipation, yet how their frequency, amplitude, ...
Abstract: Linearization is a powerful tool that enables the analysis and control of nonlinear systems by simplifying their dynamics and allowing the use of well-established linear control techniques.
The wearable sensor market is growing at an annual compound rate of 17.8%. However, sensors have challenges, particularly in terms of miniaturization and power consumption. Several key parameters are ...
This work aims at presenting a new sampled-data model-free adaptive control (SDMFAC) for continuous-time systems with the explicit use of sampling period and past input and output (I/O) data to ...
I was impressed with a presentation by Vivek R. Dabholkar, titled “Engineered DMC models with incremental mass balance constraints,” and his comments on nonlinear control at the AIChE 2023 Spring ...
Due to the low inertia of the DC microgrid, the DC bus voltage is prone to drop or oscillate under disturbance. It is also challenging to supervise the stability of a DC microgrid since it is a highly ...
In this paper, the development of non-linear building isolation systems is overviewed. The study summarizes commonly used linear building isolation systems in two categories, which are building base ...
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Sometimes, it’s easy for a computer to predict the future. Simple phenomena, such as how sap flows down a tree trunk, are straightforward and can be captured in a few lines of code using what ...
Download this article in PDF format. The two methods presented in this article estimate first-, third-, and fifth-order Volterra kernels for an RF power amplifier (PA) using common RF laboratory ...