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Double-Tuned Impedance Matching

机译:双调谐阻抗匹配

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In the 1940s, Harold Wheeler developed the principles of double-tuned impedance matching in a simple form. These relationships are not well known. They are very useful for the antenna designer in providing a structured approach to obtain near-maximum bandwidth for narrowband and moderate-band antennas with a specified VSWR limit, using a practical arrangement of tuning elements. Wheeler first developed relationships for single-tuned impedance matching, which relate the fractional bandwidth to the antenna's Q and the maximum-permissible reflection-coefficient magnitude (or VSWR). He used the results of single-tuned impedance matching to derive the relationship for double-tuned impedance matching. Wheeler's double-tuned impedance-matching relationship is the best overall measure of the achievable fractional bandwidth for an antenna. Double tuning is practical, and provides more than double the fractional bandwidth of single-tuned impedance matching. One example of double-tuned impedance matching is presented. A comparison to recently published results for single-tuned impedance matching verifies that double tuning more than doubles the fractional bandwidth of single-tuned impedance matching.
机译:在1940年代,哈罗德·惠勒(Harold Wheeler)以简单的形式开发了双调谐阻抗匹配原理。这些关系不是很清楚。它们对于天线设计人员非常有用,它提供一种结构化的方法,通过使用调谐元件的实际布置,为具有指定VSWR限制的窄带和中带天线获得接近最大的带宽。惠勒首先开发了用于单调谐阻抗匹配的关系,该关系将分数带宽与天线的Q和最大允许反射系数幅度(或VSWR)相关联。他使用单调谐阻抗匹配的结果来推导双调谐阻抗匹配的关系。惠勒的双调谐阻抗匹配关系是天线可实现的分数带宽的最佳整体度量。双调谐是实用的,并且提供了单调谐阻抗匹配分数带宽的两倍以上。提出了双调谐阻抗匹配的一个例子。与最近发布的单调谐阻抗匹配结果的比较证明,双调谐比单调谐阻抗匹配的分数带宽增加了一倍以上。

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