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Bilaterally controlled pole-changing three-phase power generation system

A power generation system and magnetic pole technology, applied in control systems, control generators, electrical components, etc., can solve the problems of high precision of process structure, high cost, unstable voltage fluctuation, etc.

Inactive Publication Date: 2016-02-03
李德生
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0002] At present, frequency conversion technology cannot be applied to generators because the frequency of the power grid is a fixed value. New energy wind turbines and hydropower generators cannot uniformly drive generators due to wind speed and flow velocity, resulting in unequal power generation and unstable voltage fluctuations; Large machine speed ratio and large difference in power generation; multi-pole low-speed and direct-drive generators are expensive, the process structure requires high precision, and permanent magnets are easily affected by other magnets, making it difficult to replace demagnetization and loss of magnetism

Method used

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Embodiment 1

[0020] Embodiment 1: A 40 kilowatt alternator: excitation voltage 90V; current 5A, power=450VA. The active magnetic control system slidesheng only controls a power load of 450VA, which is relatively easy in process structure and low in cost.

[0021] The structure of the present invention includes: active magnetic control system slidesheng, active magnetic control system slidesheng control port 1, active magnetic control system slidesheng control port 2, magnetic field line direction 1, S / N magnetic pole 1, excitation wire package 1, output line package, side I-shaped magnetizer 1, N / S magnetic pole 2, direction of magnetic force line 2, rotor rotation direction 1, output port 1, active magnetic control system slidesheng control port 4, active magnetic control system slidesheng control port 3, output magnetizer 1, direction of magnetic force line 3. N / S magnetic pole 3, excitation wire package 2, side I-shaped magnetizer 2, S / N magnetic pole 4, magnetic force line direction 4...

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Abstract

The invention creatively discloses a bilaterally controlled pole-changing three-phase power generation system, which comprises an active magnetic control system lidesheng, a control port 1 of the active magnetic control system lidesheng, a control port 2 of the active magnetic control system lidesheng, a magnetic line direction 1, an S / N magnetic pole 1, an excitation solenoid 1, an output solenoid, a lateral H-shaped magnetizer 1, an N / S magnetic pole 2, a magnetic line direction 2, a rotor rotating direction 1, an output port 1, a control port 4 of the active magnetic control system lidesheng, a control port 3 of the active magnetic control system lidesheng, an output magnetizer 1, a magnetic line direction 3, an N / S magnetic pole 3, an excitation solenoid 2, a lateral H-shaped magnetizer 2, an S / N magnetic pole 4, a magnetic line direction 4, a rotor rotating direction 2, an output port 2, an output port 3, an output port 4, an output port 5, an output port 6 and the like.

Description

technical field [0001] The present invention relates to a double-side controlled pole-changing power generation technology for multi-field applications such as active magnetism, in particular to a device that uses a double-sided I-shaped magnetic conductor to control the forward and reverse direction of the wire-wrapped current and the size of the wire-wrapped current; Wind power generators, water power generators and power generation devices driven by unequal speeds (referred to as "two-side controlled pole-changing three-phase power generation system"). Background technique [0002] At present, frequency conversion technology cannot be applied to generators because the frequency of the power grid is a fixed value. New energy wind turbines and hydropower generators cannot uniformly drive generators due to wind speed and flow velocity, resulting in unequal power generation and unstable voltage fluctuations; The difference in power generation is large when the machine speed r...

Claims

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Application Information

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IPC IPC(8): H02P9/00H02P101/00
Inventor 李德生
Owner 李德生