Microstrip array antenna with low radar cross section
A technology of radar cross-section and microstrip array, which is applied to antennas, antenna arrays, resonant antennas, etc., can solve the problems of lack of scattering characteristics and high radar cross-section of antennas, and overcome poor scattering characteristics, reduce radar cross-section, and overcome antenna gain reduction Effect
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Embodiment 1
[0037] Four radiating units 2 distributed at equal intervals are printed on the front of the dielectric material plate 1 and arranged in a line, and the interval between the radiating units is W=30mm. The rectangular metal plate 3 is printed on the back of the dielectric material plate 1, and the rectangular metal plate 3 is provided with four rectangular areas corresponding to the radiation unit. There are four complementary split resonant rings 31 distributed around each rectangular area, that is, the entire rectangular metal plate A total of 16 complementary split resonant rings are distributed on the board. Among them, one complementary split resonant ring is distributed above the line segment AB and one complementary split resonant ring is distributed below the line segment CD, and one complementary split resonant ring is distributed on the left side of the line segment AC and one complementary split resonator ring is distributed on the right side of the line segment BD, a...
Embodiment 2
[0039]Four radiating units 2 distributed at equal intervals are printed on the front of the dielectric material plate 1 and arranged in a line, and the interval between the radiating units is W=30mm. The rectangular metal plate 3 is printed on the back of the dielectric material plate 1, and the rectangular metal plate 3 is provided with four rectangular areas corresponding to the radiation unit, and there are six complementary split resonant rings 31 distributed around each rectangular area, that is, the entire rectangular metal plate A total of 24 complementary split resonant rings are distributed on the board. Among them, one complementary split resonant ring is distributed above the line segment AB and one complementary split resonant ring is distributed below the line segment CD, and two complementary split resonant rings are distributed on the left side of the line segment AC and the right side of the line segment BD respectively, and the interval between the two compleme...
Embodiment 3
[0041] Four radiating units 2 distributed at equal intervals are printed on the front of the dielectric material plate 1 and arranged in a line, and the interval between the radiating units is W=30mm. A rectangular metal plate 3 is printed on the back of the dielectric material plate 1, and four rectangular areas corresponding to the radiation unit are arranged on the rectangular metal plate 3. There are ten complementary split resonant rings 31 distributed around each rectangular area, that is, the entire rectangular metal plate A total of 40 complementary split resonant rings are distributed on the board. Among them, two complementary split resonant rings are distributed above the line segment AB and below the line segment CD, and the interval between the two resonant rings is L3=0.9mm, and the projected distance from the radiation unit is L2=1.0mm; on the left side of the line segment AC Three complementary split resonant rings are respectively distributed on the right side...
PUM
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Abstract
Description
Claims
Application Information
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