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Simple physical considerations lead to a switching power cell model valid for perturbation frequencies up to one-half of the switching frequency. The high-frequency model retains the topology and all inherent advantages of the previously introduced general low-frequency model. The procedure of obtention of the model parameters is outlined and the model predictions are compared with the measurement of a constant-frequency buck cell in heavy mode and with duty ratio as controlled quantity.  相似文献   
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The notion of a controlled quantity of a switching power cell leads to a set of six (characteristic) coefficients containing all the information on the small-signal, low-frequency behavior of any linearizable cell and defining a universal linear equivalent model of the cell. The result is a dramatic simplification of the small-signal analysis and systematization of the cells. As an illustration, three sets of characteristic coefficients of a boost cell are given: operating in heavy mode and with duty ratio, operating with maximum inductor current, and operating with the period of the switching frequency as the controlled quantity.  相似文献   
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