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Surface Impedance Engineered Low-Profile Dual-Band Grooved-Dielectric Choke Ring for GNSS Applications

机译:适用于GNSS应用的表面阻抗设计的薄型双频沟槽介电扼流圈

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摘要

A novel low-profile grooved-dielectric choke ring with dualband surface impedance resonance is proposed and experimentally demonstrated. The proposed structure is designed by engineering the surface impedance of a dielectric-based choke ring to introduce two resonant frequencies around the global navigation satellite system (GNSS) bands of L2 (1227.60 MHz) and L1 (1575.42 MHz). This provides capacitive surface impedances around both bands simultaneously, which is required for efficient surface wave suppression for higher multipath rejection performance. To demonstrate the proposed principle of surface impedance engineering, an in-house choke ring prototype of the proposed design is tested with the widely used Dorne and Margolin antenna. A high multipath rejection in both GNSS bands is experimentally confirmed with comparable performances to an otherwise bulky, heavy, and expensive conventional metallic choke ring.
机译:提出并通过实验证明了一种新型的具有双频表面阻抗谐振的低调沟槽介电扼流圈。通过对基于电介质的扼流圈的表面阻抗进行工程设计,以在L2(1227.60 MHz)和L1(1575.42 MHz)的全球导航卫星系统(GNSS)频带周围引入两个谐振频率,从而设计出建议的结构。这样可以同时在两个频带周围提供电容性表面阻抗,这对于有效的表面波抑制具有更高的多径抑制性能是必需的。为了证明表面阻抗工程的拟议原理,使用广泛使用的Dorne和Margolin天线对拟议设计的内部扼流圈原型进行了测试。实验证明,两个GNSS频段均具有高多径抑制性能,其性能可与其他笨重,昂贵且昂贵的常规金属扼流圈相媲美。

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