EP3051684B1

Control method for direct power conversion device

Abstract

This record has no abstract on file.

EP3051684B1, drawing sheet 1
Sheet 1 of 66

Term

7.9 yearsleft in the term

Expires 27 August 2034.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

4 claims: 1 independent, 3 dependent

  1. 1
    A method for controlling a direct power converter, said direct power converter comprising:a first power supply line (LH);a second power supply line (LL) which is applied with a potential lower than said first power supply line (LH) is applied;a converter (3) including an input side connected with a single-phase AC power supply (1, 2) and an output side connected with said first power supply line (LH) and said second power supply line (LL), and performing single-phase full-wave rectification;a charge and discharge circuit (4) located between said first power supply line (LH) and said second power supply line (LL);and an inverter (5) that converts a DC voltage between said first power supply line (LH) and said second power supply line (LL) into an AC voltage, said charge and discharge circuit comprising a buffer circuit (4a) including a capacitor (C4) and a first switch (Sc, D42) connected in series with said capacitor (C4) at a side close to said first power supply line (LH) between said first power supply line (LH) and said second power supply line (LL), and providing and receiving power between said first power supply line (LH) and said second power supply line (LL), and a boost circuit (4b) including a reactor (L4) and a second switch (S1, D41) connected in series with the reactor (L4) at a side close to the second power supply line (LL) between the first power supply line (LH) and the second power supply line (LL), and boosting a rectified voltage (Vrec) from said converter (3) to charge said capacitor (C4), said control method comprising the steps_ providing power, by control of said first switch (Sc, D42) in said buffer circuit (4a), to said first power supply line (LH) and said second power supply line (LL) in a first period (T1) in which a cosine value (cos(2ωt)) to a value (2ωt) of twice a phase angle (ωt) of an AC waveform output from said single-phase AC power supply (1, 2) is positive when the AC waveform is regarded as a sine value sin((ωt) of the phase angle (ωt);receiving power, by control of said second switch (S1, D41) in said boost circuit (4b), from said first power supply line (LH) and said second power supply line (LL) in a second period (T2) in which said cosine value is negative, wherein said converter (3) is conductive at a rectifying duty (drec), said rectifying duty taking a value of √2-times an absolute value (|sin(ωt)|) of said sine value in said first period, and characterized in that , a power (Vdc·Idc) input to said inverter (5) is a product of an absolute value (Im / √2) of an input current input to said converter (3) at a boundary between said first period and said second period, an effective value (Vm / √2) of an AC voltage (Vin) of said single-phase AC power supply, and a value ((1-(1 - k)·cos(2ωt)) obtained by subtracting, from one, a value obtained by multiplying said cosine value (cos(2ωt)) by a positive constant (1 - k) less than one.
  2. 4
    The method for controlling a direct power converter according to any one of claims 1 to 3, wherein said boost circuit (4b) comprises:a diode (D40) including an anode and a cathode that is connected between said first switch (Sc, D42) and said capacitor (C4);wherein said reactor (L4) is connected between said first power supply line (LH) and said anode, through which a current input to said boost circuit (4b) flows;and said second switch (S1, D41) is connected between said second power supply line (LL) and said anode, and said second switch (S1, D41) of said boost circuit (4b) is controlled to control a current (il) flowing through said reactor (L4) in said second period (T2).