Bidirectional multi-level soft switch DC/DC for superconducting energy storage and its voltage side phase-shift controlling method

A superconducting energy storage, multi-level technology, applied in the direction of control/regulation system, high-efficiency power electronic conversion, electrical components, etc., can solve the problems of shortening the life of the switching tube, not solving, and the stress of the switching tube

Inactive Publication Date: 2006-10-11
INST OF ELECTRICAL ENG CHINESE ACAD OF SCI
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Problems solved by technology

Although these patents adopt different topological structures, they do not solve two key problems: 1. The soft switching problem of the switching tube
These DC / DCs realize the charging and discharging of superconducting magnets through hard switching. The switching stress and loss of the switching tube are large, which not only greatly shortens the life of the switching tube, but also reduces the working efficiency of the system.
2. The DC voltage terminal voltage is low, and there is only one DC terminal voltage interface, which cannot be connected with advanced multi-level voltage source inverters
It realizes the charging and discharging of the superconducting magnet through the hard switching of the switch tubes 17a and 17b, the stress of the switch tube is large, and the loss is also large; at the same time, it has only one DC terminal voltage interface, such as figure 1 The DC voltage interface provided at both ends of the capacitor 9 shown, in order to reduce harmonics, it can only be connected to the high-voltage power system through multiple voltage source converters
However, multiple voltage source converters need to use multiple bulky and expensive power frequency transformers
Not only greatly increases the volume of the system, but also greatly increases the cost of the system

Method used

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  • Bidirectional multi-level soft switch DC/DC for superconducting energy storage and its voltage side phase-shift controlling method
  • Bidirectional multi-level soft switch DC/DC for superconducting energy storage and its voltage side phase-shift controlling method
  • Bidirectional multi-level soft switch DC/DC for superconducting energy storage and its voltage side phase-shift controlling method

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Embodiment Construction

[0025] figure 2 It is a principle diagram of the topology structure of the three-level DC voltage terminal separation form of the present invention. like figure 2 As shown, the topology of the present invention is composed of voltage unit, transformer unit and current unit, and the voltage unit is composed of two H-bridge inverters. Each of these switches has a corresponding anti-parallel diode connected in parallel with a corresponding capacitor. In the first H-bridge inverter, switches Q1, Q3 form a bridge arm, switches Q2, Q4 form another bridge arm, and the two ends of the two bridge arms are connected to each other and connected in parallel with capacitor Cd1. The two midpoints A1 and B1 of the bridge arm are connected to a winding on the primary side of the transformer, and the number of turns of the two windings on the primary side of the transformer is equal. The second H-bridge inverter is formed in exactly the same way as the first one, switches Q5, Q7 form one ...

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Abstract

The dual-way multi-level soft switch DC/DC for superconductance energy-storage comprises a voltage unit with voltage level being increased by adding primary winding and number of H-bridge inverter and current level being increased by paralleling with dc output end of H-bridge inverter, a transformer unit, and a current unit with current/voltage level being increased by paralleling/series connected with its dc output respectively. This invention reduces current ripple and requirement to circuit, and lets system work flexible within charge and discharge state.

Description

technical field [0001] The invention relates to a DC converter for superconducting energy storage and a control method thereof, in particular to a bidirectional multilevel soft-switching DC / DC and a voltage side phase shift control method for superconducting energy storage technology. Background technique [0002] In recent years, with the development of superconducting material technology, the application of superconducting materials in the field of electric power has attracted more and more attention and attention, and countries all over the world have carried out research on superconducting electric power technology. Among them, superconducting energy storage technology has attracted people's attention because it can realize multiple functions such as pulse energy regulation and power system stability control, and has become the only commercialized superconducting power technology at present. Superconducting energy storage technology is generally divided into two types: v...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M3/28H02M3/335
CPCY02B70/10
Inventor 郭文勇赵彩宏欧阳羿辛理夫李学斌
Owner INST OF ELECTRICAL ENG CHINESE ACAD OF SCI
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