ANTENNA APPARATUS AND RADAR APPARATUS FOR IMPROVING RADIATION EFFICIENCY
Disclosed is an antenna apparatus for improving radiation efficiency, which can radiate signals not having a radiation pattern where maximum radiation energy is emitted from the front side, but having a radiation pattern where maximum radiation energy is emitted from opposite lateral sides of the front side.
1 . An antenna apparatus for improving a radiation efficiency thereof, comprising:
n antennas for radiating signals;
a signal generator for generating the signals radiated through the n antennas; and
a divider for dividing the signals generated by the signal generator and transferring the signals to the n antennas,
wherein the n antennas are classified into a first antenna group comprising at least one antenna and a second antenna group comprising at least one antenna,
wherein the divider comprises an input port connected to the signal generator, n output ports connected to the n antennas respectively, and signal lines for connecting the input port and the n output ports,
wherein the signal lines comprise a dividing point where the signals input through the input port are divided into the output ports connected to the antennas included in the first antenna group and the output ports connected to the antennas included in the second antenna group, and
wherein a signal line length of a first dividing section between the output ports connected to the antennas included in the first antenna group respectively and the dividing point and a signal line length of a second dividing section between the output ports connected to the antennas included in the second antenna group respectively and the dividing point are different.
2 . The antenna apparatus of claim 1 , wherein the signal line length of the first dividing section and the signal line length of the second dividing section are different such that a phase difference between the signals transferred through the first dividing section and radiated through the antennas included in the first antenna group respectively and the signals transferred through the second dividing section and radiated through the antennas included in the second antenna group respectively is 180 degrees.
3 . The antenna apparatus of claim 1 , wherein one of the first dividing section and the second dividing section comprises a curved signal line point such that the signal line length of the first dividing section and the signal line length of the second dividing section are different.
4 . The antenna apparatus of claim 1 , wherein n is an even number.
5 . The antenna apparatus of claim 1 , wherein the signals radiated through the n antennas are short-distance detection signals where maximum radiation energy is radiated at opposite lateral sides of a front side.
6 . The antenna apparatus for improving a radiation efficiency thereof of claim 5 , comprising:
m antennas for radiating long-distance detection signals having a radiation pattern where maximum radiation energy is radiated at the front side; and
a divider for dividing the long-distance detection signals generated by the signal generator and transferring the signals to the m antennas,
wherein the divider comprises an input port connected to the signal generator, m output ports connected to the m antennas respectively, and a signal line for connecting the input port and the m output ports, and
wherein all signal line lengths of the signal lines through which the long-distance detection signals are transferred to the m antennas respectively are the same.
7 . A radar apparatus, comprising:
a signal generator for generating long-distance detection signals and short-distance detection signals;
m long-distance detection antennas for radiating the long-distance detection signals;
a long-distance detection divider for dividing the long-distance detection signals and transferring the signals to the m long-distance detection antennas;
n short-distance detection antennas for radiating the short-distance detection signals; and
a short-distance detection divider for dividing the short-distance detection signals and transferring the signals to the n short-distance detection antennas,
wherein a length of a signal line through which the short-distance detection signals are transferred to at least one of the n short-distance detection antennas is different from lengths of signal lines through which the short-distance detection signals are transferred to the other n short-distance detection antennas, and
wherein lengths of the signal lines through which the long-distance detection signals are transferred to the m long-distance detection antennas are the same.