H01Q1/42

Method and apparatus for recognizing an absorptive radome coating

A method and an apparatus for recognizing an absorptive radome coating on an apparatus for emitting electromagnetic radiation and receiving partial radiation reflected at objects is disclosed. The radome covers at least one antenna of the apparatus. A mixer mixes a frequency-modulated transmission signal with the signal received by the at least one antenna, the mixed product of the mixer is subjected to analog-to-digital conversion, the digitized signal is transformed into a two-dimensional spectrum, and the two-dimensional spectrum is mapped with a transfer function. The two-dimensional spectrum that was mapped with the transfer function is correlated with correlation matrices in order to carry out pattern recognition.

Method and apparatus for recognizing an absorptive radome coating

A method and an apparatus for recognizing an absorptive radome coating on an apparatus for emitting electromagnetic radiation and receiving partial radiation reflected at objects is disclosed. The radome covers at least one antenna of the apparatus. A mixer mixes a frequency-modulated transmission signal with the signal received by the at least one antenna, the mixed product of the mixer is subjected to analog-to-digital conversion, the digitized signal is transformed into a two-dimensional spectrum, and the two-dimensional spectrum is mapped with a transfer function. The two-dimensional spectrum that was mapped with the transfer function is correlated with correlation matrices in order to carry out pattern recognition.

Base station antennas having radomes that reduce coupling between columns of radiating elements of a multi-column array

A base station antenna includes an internal radome and a multi-column antenna array antenna. The internal radome can be configured with a plurality of columns, each having an outwardly projecting peak segment and each neighboring column of the internal radome can be separated by a valley. Each outwardly projecting peak segment(s) is oriented to project toward a front of the base station antenna and is positioned medially aligned over a respective column of the multi-column antenna array to thereby reduce mutual coupling of respective elements and/or columns of elements and/or provide a common near field environment for each element and/or each column.

Base station antennas having radomes that reduce coupling between columns of radiating elements of a multi-column array

A base station antenna includes an internal radome and a multi-column antenna array antenna. The internal radome can be configured with a plurality of columns, each having an outwardly projecting peak segment and each neighboring column of the internal radome can be separated by a valley. Each outwardly projecting peak segment(s) is oriented to project toward a front of the base station antenna and is positioned medially aligned over a respective column of the multi-column antenna array to thereby reduce mutual coupling of respective elements and/or columns of elements and/or provide a common near field environment for each element and/or each column.

COMPOUND ANTENNA DEVICE FOR OMNIDIRECTIONAL COVERAGE
20230043856 · 2023-02-09 ·

A composite antenna device (10) configured for omnidirectional operation, comprising a first antenna system (100) configured for use in a first frequency band of a first frequency range (FR2), comprising multiple first antenna elements (110, 110A) arranged in a cylindrical configuration; a second antenna system (200) configured for use in a second frequency band of a second frequency range (FR1) at a frequency which is lower than the first frequency band; and a housing (11) enclosing the first and second antenna systems, wherein the first and the second antenna systems are configured for omnidirectional operation about an axis (12) of the composite antenna device.

COMPOUND ANTENNA DEVICE FOR OMNIDIRECTIONAL COVERAGE
20230043856 · 2023-02-09 ·

A composite antenna device (10) configured for omnidirectional operation, comprising a first antenna system (100) configured for use in a first frequency band of a first frequency range (FR2), comprising multiple first antenna elements (110, 110A) arranged in a cylindrical configuration; a second antenna system (200) configured for use in a second frequency band of a second frequency range (FR1) at a frequency which is lower than the first frequency band; and a housing (11) enclosing the first and second antenna systems, wherein the first and the second antenna systems are configured for omnidirectional operation about an axis (12) of the composite antenna device.

RADOME FOR MOTOR VEHICLE COMPRISING A DECORATIVE PATTERN

The present disclosure relates to a radome for a motor vehicle, including a main body comprising at least one zone transparent to waves emitted by a wave-emitting element, wherein the at least one zone is configured to be traversed by said waves, the at least one zone comprising a face comprising an alternation of first parts covered by at least one layer of paint and second parts not covered by the at least one layer of paint, the first parts and second parts forming at least one decorative pattern and arranged to make the at least one decorative pattern transparent to the waves emitted by the wave-emitting element.

RADOME FOR MOTOR VEHICLE COMPRISING A DECORATIVE PATTERN

The present disclosure relates to a radome for a motor vehicle, including a main body comprising at least one zone transparent to waves emitted by a wave-emitting element, wherein the at least one zone is configured to be traversed by said waves, the at least one zone comprising a face comprising an alternation of first parts covered by at least one layer of paint and second parts not covered by the at least one layer of paint, the first parts and second parts forming at least one decorative pattern and arranged to make the at least one decorative pattern transparent to the waves emitted by the wave-emitting element.

LAMP DEVICE

A lamp device includes: a lamp unit; a radar unit having an antenna; and a shielding member which covers at least a part of the front surface of the radar unit where the antenna is provided and which is made of a foamed resin.

LAMP DEVICE

A lamp device includes: a lamp unit; a radar unit having an antenna; and a shielding member which covers at least a part of the front surface of the radar unit where the antenna is provided and which is made of a foamed resin.