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Reset Behavior of High Duty Cycle Pulse Transformers

机译:高占空比脉冲变压器的重置行为

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Magnetic core pulse transformers operating in a repetitive mode must maintain the core flux density within the saturation bounds of the magnetic material to provide satisfactory performance. The instantaneous flux is established by the time integration of the induced winding voltage. Alternatively, the flux is also determined by the net instantaneous magneto-motive force acting on the core in relation to the core dimensions and material hysteresis characteristics. Core material is typically non-linear and is awkward to model, so the preferred method of flux determination is via the induced voltage integration method. During the output pulse duration, this induced voltage is forced on the core via the winding by the pulsed power source and establishes the instantaneous flux and flux time derivative during the pulse. In the steady state, the integration of the induced voltage that occurs between load pulses, commonly called the back-swing period, must equal the value established by the output or load portion of the pulse to avoid saturation. This back-swing period can be driven by an external forced re-set source or by the stored energy in the transformer acting through the equivalent circuit impedance. In this paper only the stored energy re-set process is analyzed
机译:在重复模式下操作的磁芯脉冲变压器必须在磁性材料的饱和界内保持核心磁通密度,以提供令人满意的性能。通过诱导绕组电压的时间集成建立瞬时通量。或者,磁通也通过基于芯尺寸和材料滞后特性作用在芯上作用的净瞬时磁动力来确定。核心材料通常是非线性的并且是笨拙的模型,因此通过感应电压整体方法的磁通测定方法是优选的。在输出脉冲持续时间期间,通过脉冲电源绕组在芯上强制该感应电压,并在脉冲期间建立瞬时通量和磁通时间衍生物。在稳态中,在负载脉冲之间发生的感应电压的集成,通常称为背部摆动周期,必须等于由脉冲的输出或负载部分建立的值以避免饱和度。该后摆时段可以由外部强制重新设定源或通过等效电路阻抗的变压器中的存储能量驱动。在本文中,仅分析了存储的能量重新设置过程

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