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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Steered coupled-cavity-backed Hertzian dipole array
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Steered coupled-cavity-backed Hertzian dipole array

机译:转向耦合腔后赫兹偶极子阵列

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This paper presents the operating characteristics of a coupled-cavity-backed Hertzian dipole resonator array excited with mutually injection-locked voltage-controlled oscillators (VCOs). It is demonstrated that microwave spatial power-combined inter-injection locking through mutual coupling of individual antenna oscillators can be obtained with an auxiliary coupling network formed by a cavity iris configuration introduced within a reduced-height waveguide arrangement. As a result, strong mutual-coupling control can be realized and exploited in conjunction with self-injection-locked oscillators in order to achieve direct phase modulation of the locked oscillators. Beam scanning up to 10/spl deg/ off the broadside through locked VCO phase modification has been demonstrated in a three-element array occupying a space of only 0.6 /spl lambda//sub 0//spl times/0.027 /spl lambda//sub o/ at 998 MHz.
机译:本文介绍了一个由互注入锁相压控振荡器(VCO)激发的耦合腔支持的赫兹偶极子谐振器阵列的工作特性。已经证明,可以通过由引入到高度减小的波导装置中的腔虹膜配置形成的辅助耦合网络来获得通过各个天线振荡器的相互耦合的微波空间功率组合的互注入锁定。结果,结合自注入锁定振荡器可以实现和利用强大的互耦合控制,以便实现锁定振荡器的直接相位调制。通过锁定的VCO相位修改,可以从宽边对光束进行高达10 / spl deg /的光束扫描,这在三元素阵列中仅占0.6 / spl lambda // sub 0 // spl times / 0.027 / spl lambda //的空间中得到了证明低于998 MHz

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