Light detection and ranging system and mobile device
A light detection and ranging system and a mobile device are provided. The system includes laser light sources, an optical switch component and an optical chip. Wavelengths of the optical signals emitted by the laser light sources are different. The optical switch component includes optical switches and a wavelength division multiplexer. The wavelength division multiplexer includes first input ends and a first output end, each first input end is optically connected to an optical switch, and the first output end outputs optical signals of different wavelengths in a time-division manner.
1 . A light detection and ranging system, comprising:
at least two laser light sources, wherein the at least two laser light sources are configured to emit at least two optical signals, and wavelengths of the at least two optical signals emitted by the at least two laser light sources are different;
an optical switch component, wherein the optical switch component comprises at least two optical switches and a wavelength division multiplexer optically connected to the at least two optical switches, and a quantity of the at least two optical switches is equal to a quantity of the at least two laser light sources; each of the at least two optical switches is optically connected to a corresponding one of the at least two laser light resources, and the wavelength division multiplexer comprises at least two first input ends and a first output end, each of the at least two first input ends is optically connected to one corresponding optical switch of the at least two optical switches to receive an optical signal passing through the one corresponding optical switch, and the first output end of the wavelength division multiplexer outputs the at least two optical signals of at least two laser light resources;
an optical chip, configured to emit a portion of each of the at least two optical signals and receive a return optical signal reflected by a target object after the portion of each of the at least two optical signals is incident on the target object, and detect the return optical signal, wherein the detected return optical signal is used to calculate a distance and/or a speed of the target object relative to the light detection and ranging system; and
a first beam splitting component, arranged between the wavelength division multiplexer and the optical chip, and comprising a second input end and at least two second output ends, wherein the second input end is connected to the first output end of the wavelength division multiplexer, and the first beam splitting component is configured to split each of the at least two optical signals into at least two optical sub-signals, the at least two optical sub-signals are outputted through the at least two second output ends;
wherein, the optical chip comprises at least two beam splitters, each of the at least two beam splitters is optically connected to one of the at least two second output ends, and is configured to split each of the at least two optical sub-signals into a detection optical signal and a local oscillation optical signal.
2 . The light detection and ranging system according to claim 1 , wherein the optical chip divides each of the at least two optical signals into a detection optical signal and a local oscillation optical signal, the light detection and ranging system further comprises:
a dispersion component, arranged on a light existing path of the optical chip and configured to deflect detection optical signals of the at least two optical signals at different deflection angles.
3 . The light detection and ranging system according to claim 2 , wherein the dispersion component comprises a grating and/or a prism.
4 . The light detection and ranging system according to claim 1 , wherein the at least two optical switches comprise at least two semiconductor optical amplifiers, each of the at least two semiconductor optical amplifiers is configured to amplify a corresponding one of the at least two optical signals, wherein the at least two semiconductor optical amplifiers are turned on in a time-division manner, so that the first output end of the wavelength division multiplexer outputs the at least two optical signals in a time division manner.
5 . The light detection and ranging system according to claim 1 , wherein the first beam splitting component comprises:
a first beam splitting sub-component, comprising the second input end and at least two first intermediate output ends, wherein the first beam splitting sub-component is configured to receive, via the second input end, the at least two optical signals outputted from the first output end, and outputs a part of the at least two optical signals through each of the first intermediate output ends.
6 . The light detection and ranging system according to claim 5 , wherein the first beam splitting sub-component comprises at least two stages of first beam splitters, an output end of a first beam splitter in a first stage of the at least two stages is optically connected to an input end of a first beam splitter in a second stage of the at least two stages.
7 . The light detection and ranging system according to claim 6 , wherein the at least two stages of first beam splitters comprise S stages of first beam splitters, one or more output ends of one or more first beam splitters in a (S−1)-th stage of the S stages and output ends of one or more first beam splitters in a S-th stage are used as the at least two second output ends, wherein S is a positive integer larger than or equal to 1.
8 . The light detection and ranging system according to claim 6 , wherein the optical chip further comprises at least two second beam splitting sub-components, each of the at least two second beam splitting sub-components is optically connected to one of the at least two first intermediate output ends, and each of the at least two second beam splitting sub-components comprises a first intermediate input end and at least two fifth output ends, each first intermediate input end is optically connected to a corresponding first intermediate output end of the at least two first intermediate output ends, and each of the at least two second beam splitting sub-components is configured to receive, via the first intermediate input end, a portion of the at least two optical signals outputted by the corresponding first intermediate output end, and output an optical signal in the portion of the at least two optical signals via each of the at least two fifth output ends.
9 . The light detection and ranging system according to claim 8 , further comprising:
at least two first optical amplifiers, wherein each of the at least two first optical amplifiers is optically connected to one of the at least two first intermediate output ends and one of at least two intermediate input ends of the at least two second beam splitting sub-components, and is configured to amplify an optical signal outputted from the one of the at least two first intermediate output ends.
10 . The light detection and ranging system according to claim 1 , wherein the optical chip comprises:
at least two beam splitters, configured to split each of the at least two optical signals into a local oscillation optical signal and a detection optical signal;
an optical transmitting and receiving unit, configured to receive the detection optical signal from the at least two beam splitters and transmit the detection optical signal to an external environment and receives the return optical signal formed by reflection of the detection optical signal incident on the target object;
an optical mixer, configured to receive the local oscillation optical signal from the at least two beam splitters and mix the return optical signal with the local oscillation optical signal to generate a mixed signal;
a balanced detector, configured to receive the mixed signal from the optical mixer and converts the mixed signal into an electrical signal to facilitate subsequent calculation of the distance and/or the speed of the target object relative to the light detection and ranging system.
11 . The light detection and ranging system according to claim 10 , wherein the optical transmitting and receiving unit comprises a polarization splitting rotator and a coupler, the polarization splitting rotator is located at a light outgoing path of the detection optical signal outputted by a corresponding beam splitter of the at least two beam splitter, the coupler is located on the light outgoing path of the detection optical signal outputted by the polarization splitting rotator, and the polarization splitting rotator is also located on a light return path of the return optical signal received by the optical mixer, the coupler is also located on a light return path of the return optical signal received by the polarization splitting rotator.
12 . A mobile device, comprising:
a light detection and ranging system, wherein the light detection and ranging system comprises:
at least two laser light sources, wherein the at least two laser light sources are configured to emit at least two optical signals, and wavelengths of the at least two optical signals emitted by the at least two laser light sources are different;
an optical switch component, wherein the optical switch component comprises at least two optical switches and a wavelength division multiplexer optically connected to the at least two optical switches, and a quantity of the at least two optical switches is equal to a quantity of the at least two laser light sources; each of the at least two optical switches is optically connected to a corresponding one of the at least two laser light resources, and the wavelength division multiplexer comprises at least two first input ends and a first output end, each of the at least two first input ends is optically connected to one corresponding optical switch of the at least two optical switches to receive an optical signal passing through the one corresponding optical switch, and the first output end of the wavelength division multiplexer outputs the at least two optical signals of at least two laser light resources;
an optical chip, configured to emit a portion of each of the at least two optical signals and receive a return optical signal reflected by a target object after the portion of each of the at least two optical signals is incident on the target object, and detect the return optical signal, wherein the detected return optical signal is used to calculate a distance and/or a speed of the target object relative to the light detection and ranging system; and
a first beam splitting component, arranged between the wavelength division multiplexer and the optical chip, and comprising a second input end and at least two second output ends, wherein the second input end is connected to the first output end of the wavelength division multiplexer, and the first beam splitting component is configured to split each of the at least two optical signals into at least two optical sub-signals, the at least two optical sub-signals are outputted through the at least two second output ends;
wherein, the optical chip comprises at least two beam splitters, each of the at least two beam splitters is optically connected to one of the at least two second output ends, and is configured to split each of the at least two optical sub-signals into a detection optical signal and a local oscillation optical signal.