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Antenna Related

1 Optimal Radiation Length of Antennas#

1.1 Vertical Monopole Antenna#

For an ideal upright antenna, its optimal radiation efficiency occurs at a length of approximately $$
L=\frac{\lambda}{4}

which means that when the antenna length is $\frac{1}{4}$ of the wavelength of the electromagnetic wave, the radiation efficiency is best. ## Half-Wave Dipole Antenna

L=\frac{\lambda}{2}

## Full-Wave Antenna

L=\lambda

## Supplement A grounded vertical antenna, when its length is $\frac{\lambda}{4}$, has the maximum voltage at the top of the antenna, zero current, and maximum current at the base, making it the ideal radiation point. # 2 Antenna Loading By loading the antenna, the electrical length of the antenna is extended, allowing for the use of a physically shorter antenna. Essentially, it adjusts the resonant conditions of the antenna. ## 2.1 Inductive Loading - Used for antennas shorter than $\frac{\lambda}{4}$ to compensate for their capacitive characteristics of reactance. - Inductance is inserted in series at an appropriate position on the antenna, usually near the bottom or middle. - Antennas shorter than $\frac{\lambda}{4}$ exhibit capacitive behavior (negative reactance), and adding inductance (positive reactance) compensates to achieve resonance. ## 2.2 Capacitive Loading - Used to increase the equivalent length of the antenna. - A capacitive structure is added at the top of the antenna. - Increases the voltage at the top of the antenna, enhances radiation efficiency, reduces the antenna's reactance to ground, and improves the stretching effect of current distribution. | Item | Inductive Loading | Capacitive Loading | |---|---|---| | Reason | Compensate for the capacitance of short antennas | Enhance end voltage, improve efficiency | | Position | Series at bottom/middle | Parallel at top/load "capacitive hat" | | Function | Achieve resonance | Electrically extend length | | Common Applications | Shortwave whip antennas | Mobile stations, vehicle antennas, etc. | ## Impact of Loading Position - Bottom loading: Little effect on current, requires a large inductance value, lower efficiency. - Middle loading: Better efficiency, complex structure. - Top loading: Best radiation efficiency, but complex structure and high wind resistance.
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