阻抗不匹配引起的群延迟

Donald J. Lanzinger
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引用次数: 16

摘要

关于传输线阻抗失配引起的群延迟变化问题的文献很少。本文研究了阻抗失配的原因及其对宽带信号在包含传输线的系统中传输时群延迟的影响。由于实际限制,所有子组件的输入和输出阻抗与连接它们的传输线的匹配都不理想。因此,这就产生了被一段传输线隔开的两个阻抗不匹配的情况。这反过来又会引起正弦群延迟(以及振幅)的变化。由于在源和负载之间插入的开关、功率分配器、定向耦合器等元件,传输线源和负载之间也可能存在多个不匹配。这些正弦群延迟变化的周期频率以及它们的峰谷幅值取决于阻抗失配反射系数的绝对值、它们之间传输线的电长度以及传输线的传输损耗。即使在组件的输入和输出端口通常假设有足够的电压驻波比(VSWR)值,群延迟变化也会导致显著的信号失真。本文给出了预测这些群延迟变化值的各种方法。此外,还给出了减少或消除群延迟变化的实用补偿方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Group Delay Caused by Impedance Mismatch
Literature on the subject of group delay variations due to transmission line impedance mismatches is scarce. This paper investigates the causes of impedance mismatches and their effects on the group delay of a wideband signal propagating through a system containing transmission lines between various subassemblies. Due to practical limitations, all subassemblies present non-ideal input and output impedance matches to the transmission lines connecting them together. Therefore, this produces the case of two impedance mismatches separated by a length of transmission line. This, in turn, causes sinusoidal group delay (as well as amplitude) variations to occur. There can also be multiple mismatches between a transmission line source and load due to components such as switches, power splitters, directional couplers, etc., inserted between the source and load. The periodic frequency of these sinusoidal group delay variations as well as their peak-to-valley amplitudes depend on the absolute magnitude of the reflection coefficients of the impedance mismatches, the electrical length of the transmission line between them, and the transmission loss of the transmission line. The group delay variations can cause significant signal distortion even with normally assumed sufficient values of voltage standing wave ratio (VSWR) at the input and output ports of the subassemblies. This paper presents various methods to predict the values of these group delay variations. In addition, practical compensation methods to reduce or eliminate the group delay variations are given.
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