Design Method of Bidirectional Equivalent Inverse Hyperbolic Differential Controller for High Voltage Magnetron Shunt Reactor
A design method and magnetic control technology, applied in the direction of instrumentation, calculation, electrical digital data processing, etc., can solve problems such as large simulation accuracy error, large model calculation error, real-time/ultra-real-time electromagnetic transient simulation obstacles, etc., to achieve Innovative, fast-tracking, and reliable effects with control
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[0078] 1 Basic magnetic circuit circuit principle of high voltage magnetron shunt reactor
[0079] The high-voltage magnetically controlled shunt reactor uses the characteristics of AC and DC hybrid excitation to change the saturation degree of the iron core, and its magnetic circuit wiring method is as follows: figure 1 As shown, the core of the main magnetic circuit includes two windings, U 1 , U 2 is the AC network side winding, U d1 , U d2 is the DC winding voltage, due to the different permeability of different magnetic circuits, the magnetic flux The reluctance of the two main magnetic circuits where it is located bears the main excitation magnetomotive force in the whole system. The resistance is r, the current is i, H is the magnetic field strength, μ is the magnetic permeability, and φ is the initial phase of the AC voltage. The subscripts 1 and 2 of each variable represent the winding sides of the left and right legs respectively, 3, 4 and 5 represent the side ...
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