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Enhancing physical resolution of constructed ladder network for an interleaved winding

机译:增强交错绕组的梯形网络的物理分辨率

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The number of detectable natural frequencies in a frequency response governs the number of sections of the ladder network that can be constructed, starting from the measured frequency response data. This number, particularly in case of interleaved windings, is woefully small rendering the entire exercise pointless. An attempt is described wherein this physical resolution can be enhanced. This is achieved by augmenting the measured driving-point admittance data (of the interleaved winding) with information regarding natural frequencies that are observable, and hence extractable, from an additional measurement of the open-circuited neutral-end voltage spectrum. By this process, a few more additional natural frequencies become available for processing, resulting in a ladder network with an increased physical resolution, i.e., more number of sections. Measurements done on an actual interleaved winding are presented to demonstrate feasibility of the proposed method.
机译:频率响应中可检测到的固有频率的数量决定了从测量的频率响应数据开始可以构建的梯形网络的部分的数量。这个数字,特别是在交错绕组的情况下,非常小,使得整个练习毫无意义。描述了一种尝试,其中可以增强该物理分辨率。这是通过用与自然频率有关的信息扩充(交错绕组的)测得的驱动点导纳数据来实现的,该信息可从开路中性端电压频谱的附加测量中观察到并因此提取出来。通过该过程,更多的附加固有频率变得可用于处理,从而导致具有提高的物理分辨率(即,更多的部分)的梯形网络。提出了在实际交错绕组上进行的测量,以证明所提出方法的可行性。

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