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Achieving maximum power transfer in a multisource renewable system

3rd Renewable Power Generation Conference (RPG 2014), 2014
In this paper, a multi-source DC-DC power system is proposed for renewable applications. A multi-input, single inductor power converter controlled by two interacting control loops is designed. The steady-state and small-signal analysis of the designed system is carried out. A battery-photovoltaic system is designed as an application example.
Boscaino V.   +3 more
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Maximum power transfer in weakly nonlinear circuits

1988., IEEE International Symposium on Circuits and Systems, 2003
The problem of extracting maximum power for a one-port source comprising an independent current generator of arbitrary waveform connected in parallel with a nonlinear one-port characterized by truncated Volterra series is studied. Closes-form characteristics of the load absorbing maximum net energy are given in both the time and complex-frequency ...
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Maximum power transfer theorem with arbitrary Efficiency for Wireless Power Transfer

Physica Scripta
Abstract Wireless power transfer (WPT) has been actively studied by many companies and research institutes for decades, and individual technologies have been highly developed. However, except for nearly contact WPT, it has not yet reached a standard adopted by multiple manufacturers.
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Maximum Power-Transfer Coefficient between Two Confocal Apertures*

Journal of the Optical Society of America, 1969
Maximum power transfer theorem, discussing rotation symmetry with respect to optic axis and confocal optical ...
Harvey N. Rexroad, B. J. Henderson
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On generalizations of the maximum power transfer problem

Proceedings of the IEEE, 1972
The necessary conditions for maximum power transfer to the outputs of a multiport are discussed. The condition Z = Z 0 *is sufficient. A solution to this problem is not generally unique, because the matrix Z must satisfy the matrix equation Z(Z 0 + Z 0 *)-1E 0 = - Z 0 (Z 0 + Z 0 *)-1E 0 + E 0 .
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Maximum Power Transfer for Full-Wave Rectifier Circuits

IEEE Transactions on Aerospace and Electronic Systems, 1983
An analysis is done to determine the maximum power transfer conditions for full-wave rectifier circuits. Potential applications noted are implanted medical instruments, inductive power transfer to weapons, power transfer using space reflectors, and power generation in space.
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Boundary Nevanlinna Pick interpolation for maximum power transfer

1998 IEEE International Conference on Electronics, Circuits and Systems. Surfing the Waves of Science and Technology (Cat. No.98EX196), 2002
The classical problem of maximum power transfer from a generator to a passive load in the sinusoidal steady state is extended to the case where there are a number of sinusoidal sources having possibly different frequencies. By formulating the matching conditions in terms of the scattering parameters, the interpolation conditions on the passive load and
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Maximum Power Transfer Efficiency of Various MIMO Systems

2019 IEEE Asia-Pacific Microwave Conference (APMC), 2019
The maximum power transfer efficiency (MPTE) between multiple transmitting elements and receiving elements (MIMO) has been formulated by using eigenvalues of the matrix based on either Z matrix or S matrix [1]. Now, in this paper, the method is applied to various basic MIMO systems to compare their maximum transfer efficiency. The MIMO systems involved
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Many Faces of the Maximum Power Transfer Theorem

International Journal of Electrical Engineering & Education, 2003
The celebrated maximum power transfer theorem, which is usually stated for source impedance Zg = Rg + jXg and load impedance ZL = RL + jXL, is revisited, and generalised for other possible situations in which either Zg or ZL or both are parallel combinations of a resistance and a reactance, and for all possible cases of load variability.
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