A new method of measuring standing wave distributions on electromagnetic waveguiding structures

D. Griffin
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引用次数: 1

Abstract

A novel method of measuring standing-wave distributions, using a modulated scatterer and a microwave homodyne receiver, has been developed, analyzed, tested, and shown to yield accurate results. Because the modulated scatterer can take the form of a small photoconductive dipole on the end of an optical fiber, access to the field to be measured from a contiguous shielded region, as in slotted transmission line instruments, is not necessary. With the availability of relatively inexpensive computer-controlled micropositioners, the mechanical translation of such a scatterer along a microstrip transmission line designed for operation at millimeter wavelengths can be readily automated and combined with scatterer microwave signal measurements. Analysis shows that the modulated scattered microwave signal is proportional to the cube of the standing-wave pattern of microwave signal variation on the microwave guiding structure, assuming that a single mode of propagation is involved. This has been verified experimentally.<>
一种测量电磁波导结构驻波分布的新方法
一种测量驻波分布的新方法,使用调制散射器和微波零差接收机,已经开发,分析,测试,并显示出产生准确的结果。由于调制散射体可以采用光纤末端的小光导偶极子的形式,因此无需从相邻的屏蔽区域进入要测量的场,如在开槽传输线仪器中。有了相对便宜的计算机控制的微定位器,沿着微带传输线设计用于毫米波操作的这种散射体的机械平移可以很容易地自动化,并与散射体微波信号测量相结合。分析表明,在单一传播模式下,调制后的散射微波信号与微波波导结构上的微波信号变化驻波方向图的立方成正比。这已经被实验证实了
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