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Titlebook: Equivalent-Small-Parameter Analysis of DC/DC Switched-Mode Converter; Yanfeng Chen,Bo Zhang Book 2019 Springer Nature Singapore Pte Ltd. 2

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楼主: grateful
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Arbeitsmethoden der Thermodynamikages of simple algorithm and higher accuracy. It is suitable for approximate analysis of high-order nonlinear systems [.,.,.,.]. This chapter introduces the basic principles of ESP, the simplification of the algorithm, the error estimation of the periodic solution, and its extension in general strong nonlinear systems.
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https://doi.org/10.1007/978-3-642-93226-7t higher accuracy periodic solution of the converter can be attained by ESPM, with only lower-order linear algebra or differential equations being solved. Even when the converter operates with lower switching frequency and thus larger ripples, the ESPM is still efficient.
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https://doi.org/10.1007/978-3-663-13824-2 found wider applicability, as it does not need to satisfy the assumptions of small ripples and linear waveform with inductor current. The analytical periodic solutions, which can be helpful for better understanding the nonlinear operating mechanism of the circuit, are all confirmed to be more accurate by simulations.
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https://doi.org/10.1007/978-3-658-04618-7with higher operating frequency, the results from this method is identical with that from SSA. And for the system with lower switching frequency and larger ripples, the proposed method is better than the SSA method, as the effects of higher harmonic terms of the periodic solutions are considered.
发表于 2025-3-24 08:52:28 | 显示全部楼层
Equivalent-Small-Parameters Method (ESPM),ages of simple algorithm and higher accuracy. It is suitable for approximate analysis of high-order nonlinear systems [.,.,.,.]. This chapter introduces the basic principles of ESP, the simplification of the algorithm, the error estimation of the periodic solution, and its extension in general strong nonlinear systems.
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Analysis of Voltage-Mode Controlled DCM-PWM DC/DC Converters Based on ESPM,od. With the help of waveform of inductor current and the DC analysis at steady-state, this chapter presents two methods for determining the term d3. It is shown that the results of both methods are quite consistent with those from numerical simulations.
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