IP Library Granted Patent US 12669574
Granted Patent B2
US 12669574 · App. 18/435,169 · Granted Jun 30, 2026

Radar antenna system

Inventors: Dennis Vollbracht (Hilden, DE); Sachit Varma (Duisburg, DE)
Assignee: Aptiv Technologies AG
G01S7/03G01S13/931
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Quick Facts
Patent No.
US 12669574
App. No.
18/435,169
Granted
Jun 30, 2026
Kind
B2
Abstract

A radar antenna system comprises a first antenna, an additional first antenna, a second antenna, a guiding section, a branching section, an additional branching section, a filter section and an additional filter section. The branching section and the additional branching section are coupled in series in between the guiding section and the first antenna. The branching section couples the filter section to the guiding section and the additional branching section couples the additional filter section to the guiding section. The guiding section guides energy at a first, second and further frequency. The filter section couples the guiding section to the second antenna, blocks energy at the first frequency and passes energy at the second frequency. The additional filter section couples the guiding section to the second antenna or to a termination, blocks energy at the first frequency and passes energy at the further frequency.

Claims (49)

1 . A radar antenna system for a vehicle comprising:

a first antenna, a second antenna, and a transmission line network;

wherein:

the transmission line network has a guiding section, a branching section, an additional branching section, a filter section and an additional filter section;

the branching section and the additional branching section are coupled in series in between the guiding section and the first antenna;

the filter section is coupled in parallel to the first antenna via the branching section and the additional filter section is coupled in parallel to the first antenna via the additional branching section;

the filter section is configured to block electromagnetic energy at a first frequency and to pass electromagnetic energy at a second frequency;

the additional filter section is configured to block electromagnetic energy at the first frequency and to pass electromagnetic energy that is at a different frequency from the first frequency;

the branching section and the additional branching section are configured to pass electromagnetic energy at the first frequency;

the filter section couples the guiding section to the second antenna; and

the additional filter section couples the guiding section to the second antenna or to a termination of the transmission line network.

2 . The radar antenna system of claim 1 , wherein the different frequency equals the second frequency.

3 . The radar antenna system of claim 1 , wherein an end of the branching section that couples to the filter section and an end of the additional branching section that couples to the additional filter section are located at opposite sides from a longitudinal path connecting the guiding section to the first antenna via the branching section and the additional branching section.

4 . The radar antenna system of claim 1 , wherein the additional branching section is coupled in between the branching section and the first antenna.

5 . The radar antenna system of claim 1 , wherein the transmission line network is configured as a substrate integrated waveguide network.

6 . The radar antenna system of claim 1 , wherein the filter section and/or the additional filter section are configured as stepped impedance filters.

7 . The radar antenna system of claim 1 , wherein the second antenna comprises two antenna elements that are serially coupled to the filter section.

8 . The radar antenna system of claim 1 , wherein the second antenna comprises an antenna element that is configured as a transversely fed elongated element.

9 . The radar antenna system of claim 1 , wherein the second antenna comprises an antenna element that is configured as a longitudinally fed elongated element.

10 . The radar antenna system of claim 1 , wherein:

the additional filter section couples the guiding section to the second antenna;

the second antenna comprises an antenna element that is coupled to the guiding section via both the filter section and the additional filter section.

11 . The radar antenna system of claim 1 , wherein:

the additional filter section couples the guiding section to the second antenna;

the second antenna comprises a first antenna element and a second antenna element;

the first antenna element is coupled to the guiding section via the filter section but not via the additional filter section; and

the second antenna element is coupled to the guiding section via the additional filter section but not via the filter section.

12 . The radar antenna system of claim 1 , wherein a polarization of the first antenna differs from a polarization of the second antenna.

13 . The radar antenna system of claim 1 , wherein:

a width of a main antenna lobe of the first antenna in a transverse direction differs from a width of a main antenna lobe of the second antenna in the transverse direction; and/or

a direction of a main antenna lobe of the second antenna is different from a direction of the main antenna lobe of the first antenna.

14 . A vehicle comprising the radar antenna system of claim 1 .

15 . A radar system comprising:

a radar circuit;

a radar antenna system for a vehicle, the radar antenna system being connected to the radar circuit and including a first antenna, a second antenna, and a transmission line network;

wherein:

the transmission line network has a guiding section, a branching section, an additional branching section, a filter section and an additional filter section;

the branching section and the additional branching section are coupled in series in between the guiding section and the first antenna;

the filter section is coupled in parallel to the first antenna via the branching section and the additional filter section is coupled in parallel to the first antenna via the additional branching section;

the filter section is configured to block electromagnetic energy at a first frequency and to pass electromagnetic energy at a second frequency;

the additional filter section is configured to block electromagnetic energy at the first frequency and to pass electromagnetic energy that is at a different frequency from the first frequency;

the branching section and the additional branching section are configured to pass electromagnetic energy at the first frequency;

the filter section couples the guiding section to the second antenna; and

the additional filter section couples the guiding section to the second antenna or to a termination of the transmission line network.

16 . The radar system of claim 15 , wherein the different frequency equals the second frequency.

17 . The radar system of claim 15 , wherein an end of the branching section that couples to the filter section and an end of the additional branching section that couples to the additional filter section are located at opposite sides from a longitudinal path connecting the guiding section to the first antenna via the branching section and the additional branching section.

18 . The radar system of claim 15 , wherein the additional branching section is coupled in between the branching section and the first antenna.

19 . The radar system of claim 15 , wherein the transmission line network is configured as a substrate integrated waveguide network.

20 . The radar system of claim 15 , wherein the filter section and/or the additional filter section are configured as stepped impedance filters.