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The directional gain and efficiency of a travelling wave V-antenna in the UHF band

机译:UHF频段中行进波V-天线的方向增益和效率

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To obtain a high directional gain, it is necessary to design the antenna so that the far ends of the arms contribute significantly to the transmitted power. Measurements of attenuation due to radiation and ohmic losses are made on three antennas having arms of different cross-sectional area. The values obtained are used in theoretical calculation of the gain of V-antennas as a function of arm lengths for optimized apex angles. The results indicate that the gain reaches a maximum when the arm length is about 4 m and decreases for further increase in arm length. This anomaly is explained by the fact that in optimizing the apex angle, it was assumed that no attenuation occurred along the arms. In the case of UHF antennas having arms with relatively large cross-sectional area, the ends of the V-antennas do not radiate significantly and are, in fact, unnecessary. When the computer was instructed not to adjust the apex angle for lengths beyond 4 m, the calculated gain characteristics changed, and the maximum gain of the antenna was about 19 dB. This result was verified by measurement.
机译:为了获得高方向增益,需要设计天线,使得臂的远端对传输的功率有贡献。在具有不同横截面积的臂的三个天线上制造由于辐射和欧姆损耗引起的衰减测量。所获得的值用于作为用于优化顶点角度的臂长度的函数的V-天线增益的理论计算。结果表明,当臂长约4米约4米并且减少臂长度时,增益达到最大值。通过以下事实解释了这种异常,即在优化顶角,假设沿着臂不发生衰减。在具有具有相对大的横截面积的臂的UHF天线的情况下,V-天线的端部不会显着辐射,实际上是不必要的。当指示计算机时不调整超过4μm的长度的顶角,计算的增益特性改变,并且天线的最大增益约为19 dB。通过测量验证该结果。

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