Control method for three-level neutral-point potential balance zone verification and correction based on zero sequence voltage injection
A zero-sequence voltage, potential balance technology, applied in electrical components, output power conversion devices, AC power input into DC power output and other directions, can solve the problem of inaccurate voltage deviation adjustment control, zero-crossing point increase, mid-point potential fluctuation problems, lack of awareness, etc.
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[0035] The present invention is described in further detail below in conjunction with accompanying drawing:
[0036] see Figure 1-7 , the main circuit topology of the three-level neutral point clamped inverter is as follows figure 1 As shown, it is mainly composed of three-phase diode clamping circuit and DC capacitor.
[0037] 5.1. Midpoint potential fluctuation model
[0038] Taking the midpoint of the DC capacitor as the reference point, the switching state of the inverter can be expressed as:
[0039] V s =[S a , S b , S c ,] T (1);
[0040] where S x =-1, 0, 1, x = a, b, c.
[0041] For any phase bridge arm, when the clamp is at the midpoint, that is, S x (t)=0, at this time the current will flow into the neutral line through the clamp diode, so the instantaneous value of the neutral line current can be expressed as:
[0042] i np (t)=[1-abs(S a )]*i a +[1-abs(S b )]*i b +[1-abs(S c )]*i c
[0043] =-abs(S a )*i a -abs(S b )*i b -abs(S c )*i c ...
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