The present invention relates to a phase-controlled AC voltage stabilizing circuit and particularly to an AC voltage stabilizing circuit to perform rapid multi-stage pulse width modulation of the input power within each half cycle thereof to be output to resolve the bulky and heavy drawbacks of the voltage stabilizing equipment.
In recent years, rapid technology progress makes all sorts of electronic instruments and precision equipment widely adopted. The equipment can accept merely limited variations of the input power. For instance, voltage swell could cause damage of the utilization equipment, and voltage sag could also cause unstable power utilization. In a power distribution system, each feeder has many users. When the feeder is heavily loaded or disconnected, voltage drop variations on the circuit could cause unstable voltage to the neighboring power utilization equipment. Hence an AC voltage stabilizer is an important device to improve power quality.
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Therefore, the primary object of the present invention is to provide a phase-controlled AC voltage stabilizing circuit to overcome the poor input power factor on the power source side caused by feedback of current harmonic to a power supply system during voltage stabilizing process of the conventional power voltage stabilizer and the need of designing a low harmonic filter to improve power quality of output voltage that results in a bulky and heavy filter.
To achieve the foregoing object, the invention employs techniques as follows: providing a buffer device to connect an input power side and an exciting side of a transformer. The buffer device has two one-way conduction paths that are in opposite conductive directions. When one one-way conduction path is set ON, the other one-way conduction path is set OFF to respectively provide flywheel path of exciting current within the positive half cycle and negative half cycle for the transformer. Each one-way conduction path includes at least one controllable switch and at least one one-way conduction device coupled in series. A pulse width modulation (PWM in short hereinafter) control device is connected between the buffer device at the exciting side of the transformer and a neutral point of a power supply system. The PWM control device is a semiconductor two-way switch for switching ON and OFF a number of times within each half cycle of the input power. During operation, the input power passes through the one-way conduction path of the buffer device and allows the PWM control device to be switched ON and OFF a number of times within each half cycle so that the voltage at the exciting side of the transformer is regulated to be a variable voltage with several stages. And through filtering of an inductor, the waveform of the exciting current for the transformer is smoother. Moreover, the voltage at the output side is regulated through the transformer, and distortion of output voltage waveform also can be improved through a low-pass filter.
The invention can improve the problems of the conventional AC voltage stabilizing equipment that has slow voltage regulation response time and low power factor at the power input side caused by the current harmonic.
The present invention provides a phase-controlled AC voltage stabilizing circuit that includes a buffer device and a PWM control device to control the input power, and can quickly stabilize the voltage and reduce distortion of the output voltage waveform to solve the bulky and heavy problems of the filter.
In short, the invention adopts the PWM control method and provides many advantages, notably:
1. Total volume of the voltage stabilizing equipment is smaller and lighter.
2. Faster response for transient regulation of the output voltage.
3. Smaller distortion of the output voltage waveform.
4. Reduce current harmonic pollution feeding back to the power supply system.
The foregoing, as well as additional objects, features and advantages of the invention will be more readily apparent from the following detailed description, which proceeds with reference to the accompanying drawings.
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The transformer 1 receives input power and is an auto-transformer with a load side coil 11 and a power side coil 12 on a common iron core.
The low-pass filter 2 receives output power from the transformer 1, and includes an inductor 21 and a capacitor 22. The inductor 21 receives the output power and the capacitor 22 filters out high frequency harmonic to output power for utilization.
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The PWM control device 4 is connected between the buffer device 3 at the exciting side 14 of the transformer 1 and a neutral point of a power supply system, and is a semiconductor two-way switch including four one-way conduction elements 41 and a controllable switch 42 to switch ON and OFF a number of times within each half cycle of the input power. Each one-way conduction element 41 is a diode.
The inductor 5 is connected between the exciting side 14 of the transformer 1 and the buffer device 3 to smooth exciting current waveform of the transformer 1 and also reduce current harmonic of the input power and voltage harmonic of the output power of the transformer 1.
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