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Single-feed circularly polarized microstrip ring antenna and arrays

机译:单馈圆极化微带环形天线和阵列

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摘要

An analysis is presented for a microstrip-feed proximity-coupled ring antenna and a four-element array. Interactions between the embedded microstrip feed and the radiating element(s) are rigorously included. Results demonstrate that circular polarization of both senses can be achieved with a ring antenna with proper design of two inner stubs located at angles of /spl plusmn/45/spl deg/ with respect to the feedline. Theory and experiment demonstrate an axial ratio 3-dB bandwidth of 1% and the voltage standing wave ratio (VSWR) >2 bandwidth of 6.1%. The axial ratio bandwidth is typical for a microstrip antenna with perturbations, while the VSWR bandwidth is larger than for the circular or rectangular patch with perturbations. A mutual coupling study between two elements shows that the axial ratio is less than 2 dB for interelement spacing greater than 0.55/spl lambda//sub eff/, while the VSWR >2 for all spacings considered. A comparison between theory and experiment is provided for a 2/spl times/2 element array. The benefits of sequentially rotating the antenna elements in an array environment are presented. The axial ratio and VSWR bandwidths are both increased to 6.1% and 18% for a four-element array. A single-element antenna with two orthogonal feeds to provide both senses of polarization is demonstrated. The ring antenna is small (D//spl lambda//sub 0/=0.325), the substrate thickness is thin (H//spl lambda//sub 0//spl sim/0.035), and the microstrip feed produces a completely planar antenna system, which is compatible with microwave and millimeter integrated circuits (MICs), and monolithic microwave integrated circuits (MMICs).
机译:对微带馈电接近耦合环形天线和四元件阵列进行了分析。严格地包括嵌入式微带馈线和辐射元件之间的相互作用。结果表明,采用环形天线可以实现两个感官的圆极化,这两个环形天线的正确设计是相对于馈线位于/ spl plusmn / 45 / spl deg /的角度。理论和实验表明,轴比3 dB带宽为1%,电压驻波比(VSWR)> 2带宽为6.1%。轴向比率带宽通常用于带有微扰的微带天线,而VSWR带宽大于带微扰的圆形或矩形贴片。两个元素之间的相互耦合研究表明,当元素间距大于0.55 / splλ// sub eff /时,轴向比率小于2 dB,而在考虑所有间距时,VSWR> 2。对于2 / spl times / 2个元素数组,提供了理论和实验之间的比较。提出了在阵列环境中顺序旋转天线元件的好处。对于四元件阵列,轴向比率和VSWR带宽都分别增加到6.1%和18%。演示了具有两个正交馈源以提供两种极化方向的单元素天线。环形天线很小(D // spl lambda // sub 0 / = 0.325),基板厚度很薄(H // spl lambda // sub 0 // spl sim / 0.035),并且微带馈源可完全产生平面天线系统,它与微波和毫米集成电路(MIC)和单片微波集成电路(MMIC)兼容。

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