Stabilization of Nonlinear RLC Circuits: Power Shaping and Passivation
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چکیده
In this paper we prove that for a class of RLC circuits with convex energy function and weak electromagnetic coupling it is possible to “add a differentiation” to the port terminals presening passivity-with a new storage function that is directly related to the circuit power. The result is of interest in circuits theory, but also has applications in control problems as it suggests the paradigm of power shaping stabilization as an alternative tu the well-known method of energy shaping. We show in the paper that, in contrast uith energy shaping designs, power shaping is not restricted to systems without pervasive dissipation and naturally allows to add “derivative” adions in the control. These important features, that stymie the applicability of energy shaping control, make power shaping very practically appealing, as illustrated with examples in the paper. To establish our results we exploit the geometric property that roltages and currents in RLC circuits live in orthogonal spaces, i.e., Tellegen’s theorem, and heavily rely on the seminal paper of Brayton and Moser in 1964. Note: This paper is an abridged version of (Ortega et ol., 2003).
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Discussion on: "Energy Shaping of Port-Hamiltonian Systems by Using Alternate Passive Input-Output Pairs"
The paper further elaborates on a passive output that was constructed in [3] with the purpose of providing an energybalance (EB) interpretation for basic interconnection and damping assignment (BIDA [6, 7]). Such output has its roots in power shaping [4], an alternative method to stabilize nonlinear RLC circuits subjected to the dissipation obstacle [6]. It has been recently shown in [5] that t...
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