环形等离子体系统中极向场线圈的电源电路设计

Q3 Energy Journal of Energy Systems Pub Date : 2019-09-30 DOI:10.30521/jes.609667
B. Dursun, E. Kurt, Mehmet Tekerek
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引用次数: 3

摘要

提出了一种新型等离子体系统电源电路的初步设计,并用MatLab代码实现。等离子体设备是一个圆环体,需要导线的激励,导线缠绕在圆环体周围形成环形场,极向场线圈放置在设备的外部。这种极向线圈结构点燃腔室内部的电场,并在等离子体内部产生圆形磁场。该极向场设备的拟议电气设计包括一些组件,包括交流单元和直流单元。该电路首先使用ac-dc转换器,以便将交流电网转移到直流电网。然后使用开关方案和放电电路。极向场的工作电压估计分别为1kV。事实证明,在1kV的高压条件下,所设计的系统可以产生波动幅度为66V的几乎直流的电流,波动幅度在6%以内。
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A power circuit design for the poloidal field coils in a torus shaped plasma system
An initial design for a power circuit of a new plasma system is proposed and implemented in MatLab code. The plasma device is a torus and requires an excitement of wires, which are wrapped around the torus for a toroidal field and a poloidal field coil placed at the outer part of the device. This poloidal coil structure ignites an electrical field inside the chamber and that yields to a circular magnetic field inside the plasma. The proposed electrical design for this poloidal field equipment has some components including the alternating current unit and the direct current one. The circuit first uses an ac-dc converter, in order to transfer the ac grid to the dc one. Then it uses a switching scheme and a discharge circuit. The operation voltages for the poloidal field are estimated to be 1 kV, respectively. It has been proven that the designed system can produce an almost dc current with 66 V fluctuation, which is under the limit of 6%, considering the high voltage of 1kV.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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