Combinational logic for generating gate drive signals for phase

Electric power conversion systems – Current conversion – With condition responsive means to control the output...

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318803, H02P 1326

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active

043510221

ABSTRACT:
Control signals for phase-delay rectifiers, which require a variable firing angle that ranges from 0.degree. to 180.degree., are derived from line-to-line 3-phase signals (.phi.A, .phi.B, .phi.C) and both positive and negative firing angle control signals (+.alpha. and -.alpha.) which are generated by comparing (at 20) current command and actual current (sensed at 16). Line-to-line phases are transformed (32) into line-to-neutral phases and integrated (at 34) to produce 90.degree. phase delayed signals (A.phi., B.phi., and C.phi.) that are inverted (at 26a, b, c) to produce three cosine signals (C, A and B RAMP) such that for each its maximum occurs at the intersection of positive half cycles of the other two phases which are inputs to other inverters. At the same time, both positive and negative (inverted) phase sync signals are generated for each phase by comparing (at 27a, b, c) each with the next and producing a squarewave when it is greater. Ramp, sync and firing angle control signals are then used in combinational logic (FIG. 5) to generate the gate firing control signals for SCR gate drives (30) which fire SCR devices in a bridge circuit (24).

REFERENCES:
patent: 4044295 (1977-08-01), Ferraiolo et al.
patent: 4066938 (1978-01-01), Turnbull
patent: 4156896 (1979-05-01), Weiss
patent: 4164015 (1979-08-01), Espelage et al.
patent: 4238821 (1980-12-01), Walker

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