Multi-channel coherent LiDAR apparatus
Disclosed is a multi-channel coherent LiDAR apparatus. The LiDAR apparatus includes a plurality of analog-to-digital converts (ADCs) each configured to receive reflected light reflected by a target and to convert the reflected light into a digital signal, one or more modulation units configured to receive the digital signals that have passed through some or all of the ADCs and channel signals having different frequencies or types and to modulate the digital signals, an adder configured to integrate the signals that have been modulated and received from the modulation units, a fast Fourier transform (FFT) unit configured to convert one signal integrated by the adder into a signal in a frequency domain, and a detection unit configured to detect the information on the distance of the target based on the signal converted into the signal in the frequency domain through the FFT unit.
1 . A LiDAR apparatus which comprises a plurality of channels and measures information on a distance of a target by receiving light reflected by the target after radiating light to the target, the LiDAR apparatus comprising:
a plurality of analog-to-digital converts (ADCs) each configured to receive the reflected light reflected by the target and to convert the reflected target signal into a digital signal;
one or more modulation units configured to receive the digital signals that have passed through some or all of the ADCs and channel signals having different frequencies or types and to perform amplitude modulation on the digital signals;
an adder configured to integrate the signals that have been modulated and received from the modulation units;
a fast Fourier transform (FFT) unit configured to convert one signal integrated by the adder into a signal in a frequency domain; and
a detection unit configured to detect the information on the distance of the target based on the signal converted into the signal in the frequency domain through the FFT unit,
wherein a channel signal that is used for modulation by the one or more modulation units is implemented cos(2πf m ) or {1+A m cos (2πf m )}, the A m is a modulated amplitude, and the f m is a modulated frequency, and
wherein a signal that is modulated by the one or more modulation units includes an original digital signal applied and additional sideband signals each of which has a amplitude relatively smaller than an amplitude of an original digital signal and that are disposed at both ends of the digital signal, which are spaced apart from the original digital signal by a frequency of a channel signal, or includes additional sideband signals that are disposed at both ends of the digital signal, which are spaced apart from the original digital signal by the frequency of the channel signal and each of which has an amplitude the same as the amplitude of the original digital signal.
2 . The LiDAR apparatus of claim 1 , wherein each of the plurality of ADCs is included to have a number corresponding to a number of channels included in the LiDAR apparatus.
3 . The LiDAR apparatus of claim 1 , wherein the modulation units are included to have a number identical with a number of ADCs or are included to have a number that is one less than the number of ADCs.
4 . A method of a LiDAR apparatus comprising a plurality of channels operating in order to measure information on a distance of a target by receiving light reflected by the target after radiating light to the target, the method comprising:
a first conversion process of converting, into a digital signal, reflected light that is applied for each channel;
a modulation process of receiving the digital signals that have undergone the first conversion process and channel signals having different frequencies or types and performing amplitude modulation on the digital signals;
an integration process of receiving and integrating the signals modulated in the modulation process;
a second conversion process of converting one signal that has been integrated in the integration process into a signal in a frequency domain; and
a detection process of detecting the information on the distance of the target based on the signal converted into the signal in the frequency domain through the second conversion process,
wherein a channel signal that is used for modulation by one or more modulation units is implemented as cos(2πf m ) or {1+A m cos (2πf m )}, the A m is a modulated amplitude, and the f m is a modulated frequency, and
wherein a signal that is modulated by the one or more modulation units includes additional sideband signals each of which has an amplitude relatively smaller than an amplitude of an amplitude of an original digital signal, along with a digital signal applied, and that are disposed at both ends of the digital signal, which are spaced apart from the original digital signal by a frequency of a channel signal, or includes additional sideband signals that are disposed at both ends of the digital signal, which are spaced apart from the original digital signal by the frequency of the channel signal, and each of which has an amplitude the same as an amplitude of the original digital signal.
5 . The method of claim 4 , wherein the first conversion process is performed in parallel by a number of channels included in the LiDAR apparatus.