IP Library › Granted Patent US 10,184,452
Granted Patent B2
US 10,184,452 · App. 15/510,056 · Granted Jan 22, 2019

Wind power generation system and DC power transmission system

Inventors: Kazuyori Tahata (Tokyo, JP); Kunio Kikuchi (Tokyo, JP); Makoto Miyashita (Tokyo, JP); Kenji Kamei (Tokyo, JP); Sho Tokoyoda (Tokyo, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
F03D9/257H01H9/56H02H3/087H02H7/22H02H9/02H02J3/36H02J3/386H02P9/00H02J1/108H02P9/10Y02E10/72
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Quick Facts
Patent No.
US 10,184,452
App. No.
15/510,056
Granted
Jan 22, 2019
Kind
B2
Abstract

A wind power generation system according to the present invention includes: a DC bus; a plurality of feeders connected to the DC bus for transmitting DC powers to the DC bus; a plurality of wind power generators; a plurality of AC/DC converters connected one by one to each of the wind power generators for converting AC powers generated by the connected wind power generators, into DC powers, and outputting the DC powers to the feeders; and a DC breaker and a diode, which serve as a current limiting unit installed on each of the feeders for preventing a DC current from flowing from the DC bus into the feeder.

Claims (31)

1. A wind power generation system comprising:

a DC bus;

a plurality of feeders to transmit DC powers to the DC bus, the feeders being connected to the DC bus;

a plurality of wind power generators;

a plurality of electric power conversion devices to convert AC powers generated by the wind power generators connected to the electric power conversion devices, into DC powers, and output the DC powers to the feeders, the electric power conversion devices being connected one by one to each of the wind power generators; and

a current limiter to prevent a DC current from flowing from the DC bus into each of the feeders, the current limiter being installed on each of the feeders, wherein

the current limiter includes:

a DC breaker to cut off a DC current flowing from the feeder to the DC bus when the DC current exceeds a specified value, the DC breaker being disposed at a position where the DC current flowing from the feeder to the DC bus becomes maximum;

a diode to prevent a DC current from flowing from the DC bus into the feeder, the diode being disposed between the DC breaker and the DC bus; and

a switch to supply an activation DC power from the DC bus to the wind power generator and the electric power conversion device when the wind power generator and the electric power conversion device are in an operation stop state, and open an electrical path by use of a current zero point generated on activation of the wind power generator and the electric power conversion device after the wind power generator and the electric power conversion device are activated, the switch being connected in parallel with the diode.

2. The wind power generation system according to claim 1 , further comprising a current limiting element connected in series with the switch.

3. A DC power transmission system comprising:

a DC bus;

a plurality of feeders to transmit, to the DC bus, DC powers each of which is obtained by converting an AC power generated by a wind power generator, the feeders being connected to the DC bus; and

a current limiter to prevent a DC current from flowing from the DC bus into each of the feeders, the current limiter being installed on each of the feeders, wherein

the current limiter includes:

a DC breaker to cut off a DC current flowing from the feeder to the DC bus when the DC current exceeds a specified value, the DC breaker being disposed at a position where the DC current flowing from the feeder to the DC bus becomes maximum;

a diode to prevent a DC current from flowing from the DC bus into the feeder, the diode being disposed between the DC breaker and the DC bus; and

a switch to supply an activation DC power from the DC bus to the wind power generator and an electric power conversion device to convert the AC power generated by the wind power generator into the DC power, when the wind power generator and the electric power conversion device are in an operation stop state, and open an electrical path by use of a current zero point generated on activation of the wind power generator and the electric power conversion device after the wind power generator and the electric power conversion device are activated, the switch being connected in parallel with the diode.

4. The DC power transmission system according to claim 3 , further comprising a current limiting element connected in series with the switch.

5. A DC power transmission system comprising:

a DC bus;

a plurality of feeders to transmit, to the DC bus, DC powers each of which is obtained by converting an AC power generated by a wind power generator, the feeders being connected to the DC bus;

a smoothing capacitor connected to the DC bus;

a current limiter to prevent a DC current from flowing from the DC bus into each of the feeders, the current limiting unit being installed on each of the feeders, wherein

the current limiter includes;

an AC breaker disposed at a position where a DC current flowing from the feeder to the DC bus becomes maximum, and

a reactor disposed between the AC breaker and the DC bus, and wherein

the smoothing capacitor produces a resonance phenomenon with the reactor to allow an AC current to be superposed on an accident current flowing through the AC breaker when an accident occurs in the feeder, such that the AC breaker is opened to cut off a flow of the AC-current-superposed accident current therethrough at a point of time when the AC-current-superposed accident current becomes zero.

6. The DC power transmission system according to claim 5 , further comprising a capacitor for taking a countermeasure against an accident and disposed between the AC breaker and an electric power conversion device to convert the AC power generated by the wind power generator into the DC power, wherein the accident-countermeasure capacitor produces the resonance phenomenon with the reactor to allow an AC current to be superposed on an accident current flowing through the AC breaker when an accident occurs in the DC bus, such that the AC breaker is opened to cut off a flow of the AC-current-superposed accident current therethrough at a point of time when the AC-current-superposed accident current becomes zero.

7. The DC power transmission system according to claim 5 , further comprising a phase controller to determine a timing at which the AC breaker starts an opening operation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2017
From: TAHATA, KAZUYORI; KIKUCHI, KUNIO; MIYASHITA, MAKOTO; KAMEI, KENJI; TOKOYODA, SHO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 041529/0882 →
Continuity (1)
Related Publication 20170306928A1 · Oct 26, 2017
Cited By (2)
US 12,261,444 US 12,724,058