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首页> 外文期刊>IEEE Transactions on Plasma Science >Design and Operation of a Sequentially-Fired Pulse Forming Network for Non-Linear Loads
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Design and Operation of a Sequentially-Fired Pulse Forming Network for Non-Linear Loads

机译:非线性载荷顺序点火脉冲形成网络的设计与运行

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While the construction of a linear pulse forming network (PFN) for a constant load impedance is relatively easy, the process is more difficult for a nonlinear or time-varying load. A passive PFN can certainly be synthesized for nonlinear loads, but is usually large and lacks the flexibility to be truly useful in most practical and research applications. This investigation describes the design and construction of a sequentially-fired pulse forming network (SFPFN) that maintains constant voltage and current for a nonlinear load. Operation of the SFPFN consists of charging multiple capacitor banks (or modules) to various levels and sequentially firing these banks into the load at appropriate times. The load and its characteristics determine the module charge voltage. An added benefit with the SFPFN is real-time computer monitoring and control allowing the PFN modules to be charged from a single prime power source via a group of switching relays. The nonlinear load used in this investigation is a helical coil electromagnetic launcher (HCEL). The SFPFN is also tested with a linear load consisting of a pulsed field coil. The nonlinearity of the HCEL is well-known with a factor of 2 change in winding resistance due to joule heating and a large variation in terminal voltage due to changes in the armature back-voltage. Experimental measurements show the SFPFN can deliver a relatively constant current pulse on the order of 5-15 kA into the HCEL load for a pulse length up to 8 ms. The maximum SFPFN operating voltage is 900 V with a total stored energy of 125 kJ. Scaling the SFPFN to larger or smaller pulse amplitudes or lengths is possible.
机译:尽管为恒定的负载阻抗构造线性脉冲形成网络(PFN)相对容易,但对于非线性或随时间变化的负载,该过程就更加困难。无源PFN当然可以针对非线性负载进行合成,但是通常很大,并且缺乏在大多数实际和研究应用中真正有用的灵活性。这项研究描述了顺序发射脉冲形成网络(SFPFN)的设计和构造,该网络为非线性负载保持恒定的电压和电流。 SFPFN的操作包括将多个电容器组(或模块)充电至不同水平,并在适当的时间顺序将这些电容器组发射到负载中。负载及其特性决定了模块的充电电压。 SFPFN的另一个好处是实时计算机监视和控制,允许PFN模块通过一组开关继电器从单个主电源充电。本研究中使用的非线性负载是螺旋线圈电磁发射器(HCEL)。 SFPFN还经过了由脉冲场线圈组成的线性负载的测试。众所周知,HCEL的非线性是因焦耳热引起的绕组电阻变化的2倍,以及由于电枢背压的变化引起的端子电压的较大变化,是众所周知的。实验测量表明,SFPFN可以向HCEL负载中传递5-15 kA量级的相对恒定的电流脉冲,脉冲长度长达8 ms。 SFPFN的最大工作电压为900 V,总存储能量为125 kJ。可以将SFPFN缩放为更大或更小的脉冲幅度或长度。

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