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ESPAR antenna RF nonlinearity reactive-field measurement - mitigation of distortion by anti-series varactor diode pairs

机译:ESPAR天线RF非线性反应场测量 - 防序列变容二极管对减轻失真

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摘要

Harmonic and intermodulation distortion of a recently developed lightweight film-type ESPAR antenna is investigated experimentally. These distortions arise from the nonlinearity of the varactor diode circuitry used to control the antenna's radiation pattern. Therefore, the presented results will apply to all types of ESPAR antennas that utilize the same varactor circuitry. Reactive-field measurement technology that employs low interference probes within an ultra small anechoic box is used to reduce experimental cost. Anti-series varactor diode pairs (ASVP) are introduced and compared with the conventionally used single varactor diode. ASVP showed remarkable suppression of the nonlinear distortion. In particular, the second harmonic is reduced by more than 20 dB when compared to the single varactor diode. The second and third harmonic levels are better than -80dBe when using an input power of +28dBm (640mW). The third order intermodulation intercept points vary between +43dBm~+48dBm (20~63W) for different control bias voltages.
机译:实验研究了最近开发的轻质膜型ESPAR天线的谐波和互调变形。这些扭曲来自用于控制天线辐射图案的变容二极管电路的非线性。因此,所提出的结果将适用于利用相同变容电路的所有类型的ESPAR天线。在超小型消声箱内采用低干扰探针的反应场测量技术用于降低实验成本。介绍抗序列变容二极管对(ASVP)并与常规使用的单变容二极管二极管进行比较。 ASVP显示出显着抑制非线性变形。特别地,与单个变容二极管相比,第二谐波减少了20dB以上。当使用+ 28dBm的输入功率(640mW)时,第二和第三谐波水平优于-80dbe。用于不同控制偏置电压的三阶互调截距点在+ 43dBm〜+ 48dBm(20〜63W)之间变化。

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