Power generating apparatus

6979914
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Inventors

McKelvey, Terence
Marui, Eishi
Miyamoto, Masahiro
Furuya, Tai
Kataoka, Tadashi
Sato, Motoyasu
Ishihara, Seiichi
Ozawa, Takahide
Kinoshita, Noboru
Zheng, Shaojun

Application #

781687

Filed

Feb-20-2004

Published

Dec-27-2005

Current US Class

290/40C
290/52
322/15

International Classes

H02P 009/04; F02F 011/06

Field of Search

290/40 322/14 322/16

Assignee

Ebara Corporation (Tokyo, JP); Ebara Densan Ltd. (Tokyo, JP)

Examiners

Ponomarenko; Nicholas

Attorney, Agent or Firm

Oblon, Spivak, McClelland, Maier & Neustadt, P.C.

US Patent References

4119861   Starting apparatus...
5055764   Low voltage aircraf...
5387859   Stepped waveform...
5428275   Controlled starting...
5512811   Starter/generator sy...
5581168   Starter/generator sy...
5685156   Catalytic combustio...
5694026   Turbine generator...
5703410   Control system for e...
5783932   Power generation p...
5903116   Turbogenerator/mo...
5966001   Voltage regulating...
6130486   Engine operated g...
6323625   Turbine/alternator...
6414400   Small engine drive...
6541876   Engine operated g...
6552515   Engine speed contr...
6605928   Electrical system fo...
6624528   Engine operated g...
6870350   Wound field synchr...
 

Referenced by:

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Citation

Cite This Patent

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Abstract
A power generating apparatus has a power generator 4 for generating AC power, a gas turbine engine 2 for driving the power generator 4, and an inverter device 5 for converting the AC power into commercial AC power. The power generating apparatus includes an interconnection switch S1 for connecting an output of the inverter device 5 with a commercial AC power supply system, a first voltage detector 46 for detecting a DC power supply voltage Vdc-in of the inverter device 5, and a second voltage detector 33, 45 for detecting a full-wave rectification voltage of the commercial AC power supply system. The power generating apparatus also includes an interconnection control part 18 for closing the interconnection switch S1 when the DC power supply voltage of the inverter device 5 exceeds the full-wave rectification voltage of the commercial AC power supply system.
 
Claims
1. A power generating apparatus comprising:

a power generator for generating alternating-current power;

a driving source for driving said power generator;

an inverter device for converting the alternating-current power into commercial alternating-current power;

an interconnection switch for connecting an output of said inverter device with a commercial alternating-current power supply system;

a first voltage detector for detecting a direct-current power supply voltage of said inverter device;

a second voltage detector for detecting a full-wave rectification voltage of the commercial alternating-current power supply system; and

an interconnection control part for closing said interconnection switch when the direct-current power supply voltage of said inverter device becomes equal to or exceeds the full-wave rectification voltage of the commercial alternating-current power supply system.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to a small-sized power generating apparatus such as a gas turbine power generating apparatus, and more particularly to a method of operating such a power generating apparatus.

2. Description of the Related Art

Recently, the electric power market has been liberalized under deregulations of electric power. Accordingly, power supplies that can be locally distributed have been attracted considerable attention. Small-sized gas turbine power generating apparatuses have been employed as such power supplies. In the gas turbine power generating apparatus, fuel and compressed air are supplied to a gas turbine engine to rotate the gas turbine engine at an ultrahigh rotational speed of, for example, 100,000 rpm. When the gas turbine power generating apparatus is thus operated, a power generator, which is coupled directly to the gas turbine engine, generates alternating-current (AC) power having a frequency much higher than 50 Hz or 60 Hz of a commercial AC power supply system. Therefore, an output of the power generator is rectified into direct-current (DC) power by a rectification device, then converted into AC power having a frequency, a voltage, and a phase of the commercial AC power supply system by an inverter device, and sent to the commercial AC power supply system.
 
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