Arc-shaped groove trapped wave monopole microstrip antenna based on ultra-wideband signal
A technology of ultra-wideband signal and microstrip antenna, which is applied in the direction of antenna, antenna grounding device, antenna grounding switch structure connection, etc. It can solve the problems of poor positioning accuracy, high power consumption of Wi-Fi positioning hardware, reflection and refraction, etc., and achieve cost The effect of low cost, reduced cost, and simple design structure
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Embodiment 1
[0046] This embodiment provides an arc-shaped notch monopole microstrip antenna based on an ultra-wideband signal.
[0047] An arc-shaped notch monopole microstrip antenna based on ultra-wideband signals, including a radiation patch, a dielectric substrate and a back ground plane, the radiation patch, the dielectric substrate and the back ground plane are closely connected to form a whole antenna, The radiation patch is connected to the microstrip transmission line; two sections of arc-shaped grooves with upward openings are etched from top to bottom on the side of the radiation patch close to the microstrip transmission line to realize WiMAX frequency band notch and WLAN frequency band notch Wave characteristics.
[0048] The specific technical scheme is as follows, such as Figure 1-3 Shown:
[0049] The monopole antenna is equivalent to a circular radiating patch.
[0050] Since the size of the radiating patch can be equivalent to the area of the cylindrical antenna, l...
Embodiment 2
[0062] This implementation provides an arc-shaped notch monopole microstrip antenna based on ultra-wideband signals.
[0063] An arc-shaped notch monopole microstrip antenna based on ultra-wideband signals, including a radiation patch, a dielectric substrate and a back ground plane, the radiation patch, the dielectric substrate and the back ground plane are closely connected to form a whole antenna, The radiation patch is connected to the microstrip transmission line; two sections of arc-shaped grooves with upward openings are etched from top to bottom on the side of the radiation patch close to the microstrip transmission line to realize WiMAX frequency band notch and WLAN frequency band notch Wave characteristics.
[0064] The antenna modeling process is as follows:
[0065] 1. First draw a rectangular parallelepiped medium body with (-L / 2,-W / 2,0) as the starting point, length L, width W, high position H, and material FR-4 on the xoy surface as the medium substrate. Secon...
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