Design and analysis of the Tesla transformer with duplex secondary winding

2019 ◽  
Vol 90 (10) ◽  
pp. 106104
Author(s):  
Shi He ◽  
Jun-na Li ◽  
Ai-ci Qiu
2017 ◽  
Vol 9 (2) ◽  
pp. 53
Author(s):  
R M Craven ◽  
I R Smith ◽  
B M Novac

In addition to the resistive and dielectric losses that inevitably occur near the secondary winding of a Tesla transformer, electromagnetic radiation into the far field also contributes to the overall power losses and thereby reduces both the effective quality factor (Q) and the power transfer efficiency of this winding. A short study of these effects for a laboratory scale transformer has shown that, in addition to its Q-factor being considerably reduced, the secondary winding is an extremely inefficient radiator of electromagnetic energy.


2017 ◽  
Vol 88 (5) ◽  
pp. 055112 ◽  
Author(s):  
Liang Zhao ◽  
Jian-cang Su ◽  
Rui Li ◽  
Xiao-long Wu ◽  
Xiu-dong Xu ◽  
...  

2017 ◽  
Vol 9 (1) ◽  
pp. 93
Author(s):  
Richard M Craven ◽  
Ivor R Smith ◽  
Bucur M Novac

Impulse excitation of the tuned primary circuit of a Tesla transformer generates a voltage and current response in the similarly tuned secondary circuit that contains both a fundamental component and a series of multiple higher-order modes. This paper investigates the most significant of these modes, in order to demonstrate a design approach that, when applied to the secondary winding, can bring about a reduction in the higher-order modes without significantly affecting the fundamental term. The resulting process leads to an improved spectral purity of the transformer output, making it better suited than existing conventional designs for application in electronic warfare and other high-power systems.


Author(s):  
Guntis Diļevs ◽  
Edgars Jakobsons

The generated power of multipole induction generator with secondary winding on the statorThis paper posses the construction of induction generator, which has the ability to operate at a low rotation speed. This generator can be applied for directly driven turbine without using the gearbox. The generator is multi pole with all of the windings placed on the stator. Rotor is tooth-like and has no windings on it. Primary winding is three phase, secondary winding is two phase.


Author(s):  
Aleksandr S. Serebryakov ◽  
Vladimir L. Osokin ◽  
Sergey A. Kapustkin

The article describes main provisions and relations for calculating short-circuit currents and phase currents in a three-phase traction transformer with a star-triangle-11 connection of windings, which feeds two single-phase loads in AC traction networks with a nominal voltage of 25 kilovolts. These transformers provide power to the enterprises of the agro-industrial complex located along the railway line. (Research purpose) The research purpose is in substantiating theoretical equations for digital intelligent relay protection in two-phase short circuits. (Materials and methods) It was found that since the sum of instantaneous currents in each phase is zero, each phase of the transformer works independently. We found that this significantly simplifies the task of analyzing processes with a two-phase short circuit. In this case, the problem of calculating short-circuit currents in the traction network can be simplified by reducing it to the calculation of an ordinary electric circuit with three unknown currents. (Results and discussion) The article describes equations for calculating short-circuit resistances for one phase of the transformer when connecting the secondary winding as a star or a triangle. The currents in the phases of the transformer winding at short circuit for the star-triangle-11 and star-star-with-ground schemes are compared. It was found that when calculating short-circuit currents, there is no need to convert the secondary winding of the traction transformer from a triangle to a star. (Conclusions) It was found that the results of the research can be used in the transition of relay protection systems from electromagnetic relays to modern high-speed digital devices, which will increase the operational reliability of power supply systems for traction and non-traction power consumers.


2021 ◽  
Vol 92 (8) ◽  
pp. 084705
Author(s):  
Shifei Liu ◽  
Zicheng Zhang ◽  
Yuwei Wang ◽  
Jiande Zhang ◽  
Li’an Xiao ◽  
...  
Keyword(s):  

2012 ◽  
Vol 214 ◽  
pp. 259-263
Author(s):  
Long Wang ◽  
Kun Nan Cao ◽  
Meng Song ◽  
Da Da Wang ◽  
Nan Nan Hu ◽  
...  

High leakage reactance of superconducting controlled the working principle and structure of the reactor were introduced Description and analysis of the three modes of operation of the superconducting coil of the secondary side. Three modes of operation of the secondary winding of the two superconducting windings are open, superconducting winding short-circuit superconducting windings open circuit, two superconducting windings are short-circuit. Through the design and calculation of the characteristics of a superconducting controllable reactor three modes of operation, and prospected for high-leakage reactance of superconducting controllable reactor advantages, characteristics and development prospects.


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