Five-level double-bridge bidirectional isolation type direct current converter
A DC converter, two-way isolation technology, applied in the direction of converting DC power input to DC power output, adjusting electrical variables, converting AC power input to DC power output, etc., can solve the problem of low energy transmission efficiency, complex converter structure, etc. problems, to achieve the effect of reducing costs, simplifying the drive circuit, and improving efficiency
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Embodiment 1
[0047] Such as figure 1 As shown, this embodiment provides a five-level double-bridge bidirectional isolated DC converter, which specifically includes: a five-level full-bridge structure on the high-voltage side, a half-bridge structure on the low-voltage side, and a power inductor L 1 and high frequency transformer T 1 ;
[0048] The lead-out terminals of the five-level full-bridge structure pass through the power inductor L 1 with high frequency transformer T 1 The original edge connection;
[0049] The lead-out terminals of the half-bridge structure on the low-voltage side and the high-frequency transformer T 1 side connections.
[0050] Specifically, the application of a high-frequency transformer enables the electrical isolation of the high-voltage side and the low-voltage side, which can obtain a higher voltage ratio and is suitable for higher power.
[0051] For example, the five-level full-bridge structure on the high-voltage side includes: the high-voltage side ...
Embodiment 2
[0070] In this embodiment, the first switch tube to the tenth switch tube use IGBT modules; 1 , S 2 Respectively with the switch tube S 3 , S 4 The turn-on and turn-off signals are complementary, and the switch tube S 5 , S 6 Respectively with the switch tube S 7 , S 8 The turn-on and turn-off signals are complementary. Specifically, the drive signals of the switch tubes are shown in Table 1. By controlling the on-off of the switch tubes, a five-level line voltage output can be obtained, corresponding to the low-voltage side. At the same time, the two switch tubes S9 and S10 are only There is a plus conduction signal; during use, the switch tube S9 is turned on, the output voltage is E2 / 2, the switch tube S10 is turned on, and the output voltage is -E2 / 2, as shown in Table 1; by controlling the secondary output side The phase angle difference between the square wave and the output square wave of the primary side can control the voltage on both sides of the inductor L1, ...
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