Patent classifications
G01S13/32
MEASUREMENT DEVICE, MEASUREMENT METHOD, AND COMPUTER-READABLE MEDIUM
A measurement device includes a memory; and a hardware processor coupled to the memory. The hardware processor is configured to: detect a vibration width of an antenna that receives a measurement target radio wave from a target on which a communication system that transmits the measurement target radio wave is mounted, based on a first reception radio wave received by the antenna; and derive communication performance of the communication system, based on a second reception radio wave that is the measurement target radio wave received by the antenna when the vibration width is greater than 0 and equal to or smaller than a set width greater than 0.
MEASUREMENT DEVICE, MEASUREMENT METHOD, AND COMPUTER-READABLE MEDIUM
A measurement device includes a memory; and a hardware processor coupled to the memory. The hardware processor is configured to: detect a vibration width of an antenna that receives a measurement target radio wave from a target on which a communication system that transmits the measurement target radio wave is mounted, based on a first reception radio wave received by the antenna; and derive communication performance of the communication system, based on a second reception radio wave that is the measurement target radio wave received by the antenna when the vibration width is greater than 0 and equal to or smaller than a set width greater than 0.
High resolution MIMO radar system
An automotive radar system includes multiple radar antennas and a radar front end chip. The front end chip includes a plurality of phase rotators coupled to a local oscillator, wherein each phase rotator of the plurality of phase rotators is coupled to multiple digital phase modulators; a plurality of switches that couple selectable ones of the multiple digital phase modulators to respective amplifiers, each amplifier coupled to a respective antenna output; and a controller which provides digital control signals to the plurality of phase rotators, the multiple digital phase modulators, and the plurality of switches to synthesize transmit signals for each of the multiple radar antennas.
Radio or sonic wave detector, transmitter, receiver and method thereof
A continuous wave, frequency diverse array (FDA) Detector, Transmitter, Receiver and/or Method are disclosed. The frequencies can be radio waves or sonic waves. Different frequencies are applied to each transmitter element, to generate transmissions schemes with repeating patterns of constructive interference (e.g. each pattern may be a spiral). The patterns differ (e.g. opposite spiral directions to help determine azimuth, or different spiral rotation speeds to help determine range), to a sufficient extent that from the timing of signal reflected back as a result of each one, the azimuth and/or range of an object can be determined, irrespective of where the object/target is in the field of view. Use of continuous wave transmissions enables lower transmission powers and/or avoids requiring an expensive beam-steering transmitters or receivers.
Radio or sonic wave detector, transmitter, receiver and method thereof
A continuous wave, frequency diverse array (FDA) Detector, Transmitter, Receiver and/or Method are disclosed. The frequencies can be radio waves or sonic waves. Different frequencies are applied to each transmitter element, to generate transmissions schemes with repeating patterns of constructive interference (e.g. each pattern may be a spiral). The patterns differ (e.g. opposite spiral directions to help determine azimuth, or different spiral rotation speeds to help determine range), to a sufficient extent that from the timing of signal reflected back as a result of each one, the azimuth and/or range of an object can be determined, irrespective of where the object/target is in the field of view. Use of continuous wave transmissions enables lower transmission powers and/or avoids requiring an expensive beam-steering transmitters or receivers.
ANTENNA AND GLIDE PATH ARRAY FOR SMALL FOOTPRINT AIRCRAFT PRECISION APPROACH AND LANDING SYSTEM
An instrument landing system (ILS) is described. The ILS comprises a plurality of antennas and a plurality of antenna radio units (ARUs). Each ARU of the plurality of ARUs operates to generate a modulated RF signal provided to a different one of the plurality of antennas for transmission. The ILS further comprises a central processing unit that operates to control the ARUs to adjust synchronization between the modulated RF signal provided by the ARUs to the plurality of antennas for transmission.
ANTENNA AND GLIDE PATH ARRAY FOR SMALL FOOTPRINT AIRCRAFT PRECISION APPROACH AND LANDING SYSTEM
An instrument landing system (ILS) is described. The ILS comprises a plurality of antennas and a plurality of antenna radio units (ARUs). Each ARU of the plurality of ARUs operates to generate a modulated RF signal provided to a different one of the plurality of antennas for transmission. The ILS further comprises a central processing unit that operates to control the ARUs to adjust synchronization between the modulated RF signal provided by the ARUs to the plurality of antennas for transmission.
Signal processing device, radar system, and signal processing method
Provided is a signal processing device capable of distinguishing and measuring a plurality of measurement targets even with simple configuration. The signal processing device including a reception processing unit that receives a response to a predetermined signal transmitted from a transmission antenna, and a determination unit that determines the plurality of measurement targets by a response to a plurality of signals corresponding to a second direction having a predetermined range different from a first direction having a predetermined range.
Signal processing device, radar system, and signal processing method
Provided is a signal processing device capable of distinguishing and measuring a plurality of measurement targets even with simple configuration. The signal processing device including a reception processing unit that receives a response to a predetermined signal transmitted from a transmission antenna, and a determination unit that determines the plurality of measurement targets by a response to a plurality of signals corresponding to a second direction having a predetermined range different from a first direction having a predetermined range.
Electronic device, radar device and radar control method
An electronic device capable of reducing a process associated with a radar search is provided. The electronic device DEVa has a transmitting linear array antenna TXA, a receiving linear array antenna RXA, and a control circuit CTLU for controlling the transmitting linear array antenna TXA and the receiving linear array antenna RXA. The transmitting linear array antenna TXA includes a plurality of transmission antennas TXr[1] to TXr[4] arranged along the Z direction, and transmits a transmission wave. The receiving linear array antenna RXA includes a plurality of reception antennas RXr[1] to RXr[4] arranged along an X direction orthogonal to the Z direction, and receives a reflected wave of a transmission wave.