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Design of a New Type of Solid-State Coaxial Blumlein Pulse Forming Line

机译:新型固态同轴Blumlein脉冲成形线的设计

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Due to the volume and weight of the coaxial Blumlein pulse forming line (B-PFL) with liquid energy storage medium are very large and energy storage density is relatively small, a new solid-state coaxial B-PFL is designed for the pulsed power technology in this paper. There are three conductor cylinders in the pulse forming line (PFL): inner cylinder, middle cylinder, and outer cylinder. Ferroelectric ceramics is selected as the energy storage medium which is between the middle cylinder and inner cylinder, and middle cylinder and outer cylinder. The impedance, electric length, parameters such as pulsewidth and its required physical length calculation formula of the PFL is deduced, based on the coaxial cable of the related parameter calculation formula. The formula for determination of relative suitable radius size is obtained. The simulation of electric field of PFL is implemented in the simulation software Ansoft Maxwell, and the results show that the design of the coaxial B-PFL is feasibility. The pulse forming principle has carried on the detailed validation in the simulation software PSPICE, and the results show that the design scheme of PFL is feasible. The application of the PFL can largely reduce the volume and weight of the pulsed power device, and it has a good application prospect.
机译:由于带有液体储能介质的同轴Blumlein脉冲形成线(B-PFL)的体积和重量非常大,并且能量存储密度相对较小,因此针对脉冲功率技术设计了一种新型固态同轴B-PFL在本文中。脉冲形成线(PFL)中有三个导体圆柱体:内圆柱体,中间圆柱体和外圆柱体。选择铁电陶瓷作为储能介质,该储能介质位于中间圆柱体与内部圆柱体之间以及中间圆柱体与外部圆柱体之间。基于相关参数计算公式的同轴电缆,推导了PFL的阻抗,电长度,脉宽等参数及其所需的物理长度计算公式。获得用于确定相对合适的半径尺寸的公式。在仿真软件Ansoft Maxwell中对PFL的电场进行了仿真,结果表明同轴B-PFL的设计是可行的。脉冲形成原理已经在仿真软件PSPICE中进行了详细的验证,结果表明PFL的设计方案是可行的。 PFL的应用可以大大减小脉冲功率器件的体积和重量,具有良好的应用前景。

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