Imaging system with enhanced scan rate
A LIDAR system includes a signal director that can direct an outgoing LIDAR signal to any one of multiple different alternate waveguides. Each of the alternate waveguides being associated with a different switch channel in that a light signal that includes light from the outgoing LIDAR signal directed to a particular one of the alternate waveguides can be characterized as carrying the switch channel associated with that alternate waveguide. The LIDAR system is configured to output system output signals that include light from the outgoing LIDAR signals. The system output signals carry different switch channels. The LIDAR system is configured to receive system return signals that each includes light from the system output signals after an object located outside of the system has received and reflected the system output signal. A signal combiner that generates different composite signals by combining light from system return signals that carry different switch channels with a reference signal. Electronics calculate LIDAR data from the frequency of one or more of the composite signals. The LIDAR system being configured to continue to generate a composite signal that carries a first one of the switch channels for a substantial period of time after the imaging system has stopped outputting the system output signal that carries the first switch channel.
1 . An imaging system, comprising:
a LIDAR system that includes a signal director that can direct an outgoing LIDAR signal to any one of multiple different alternate waveguides,
the outgoing LIDAR signal carrying a wavelength channel with a frequency that has a linearly chirped chirp cycle with multiple output periods,
each of the alternate waveguides being associated with a different switch channel in that a light signal that includes light from the outgoing LIDAR signal directed to a particular one of the alternate waveguides can be characterized as carrying the switch channel associated with that alternate waveguide;
the LIDAR system being configured to output system output signals that include light from the outgoing LIDAR signal,
the system output signals carrying different switch channels;
the LIDAR system being configured to receive system return signals that include light from one of the system output signals after an object located outside of the system has received and reflected the system output signal;
the LIDAR system including a signal combiner that generates different composite signals by combining light from system return signals that carry different switch channels with a reference signal;
electronics that calculate LIDAR data from the frequency of one or more of the composite signals, the LIDAR data indicating a radial velocity and/or distance between the LIDAR system and one or more objects that are located outside of the LIDAR system;
the LIDAR system being configured to continue to generate a composite signal that carries a first one of the switch channels for a period of time after the imaging system has stopped outputting the system output signal that carries the first switch channel; and
the LIDAR system configured to operate the signal director so as to change the alternate waveguide to which the outgoing LIDAR signal is directed at an expiration of each output period.
2 . The imaging system of claim 1 , wherein the LIDAR system can direct the outgoing LIDAR signal to a different one of the alternate waveguides while still generating the LIDAR data from the frequency of the composite signal carrying the first switch channel.
3 . The imaging system of claim 1 , wherein the wavelength channel carried by the outgoing LIDAR signal is one of multiple different wavelength channels carried by the outgoing LIDAR signal.
4 . The imaging system of claim 1 , wherein the system output signals carry multiple different wavelength channels.
5 . The imaging system of claim 4 , wherein at least two of the wavelength channels carried by the system output signals have a frequency that is chirped at a different rate and/or in a different direction.
6 . The imaging system of claim 4 , wherein there is no overlap in the frequencies of the different wavelength channels carried by the system output signals.
7 . The imaging system of claim 4 , wherein the system output signals are concurrently incident on the same sample region in a field of view.
8 . The imaging system of claim 1 , wherein the signal combiner is one of multiple signal combiners included in the LIDAR system,
each of the signal combiners generates composite signals, and
the composite signals generated by different signal combiners carry a different one of the wavelength channels.
9 . The imaging system of claim 8 , wherein the electronics use beat frequencies of composite signals that carry different wavelength channels to calculate the LIDAR data for the sample region.
10 . The imaging system of claim 1 , wherein a direction that the system output signals travels away from the imaging system changes in response to operating the signal director so as to change the alternate waveguide that receives the outgoing LIDAR signal.
11 . The imaging system of claim 10 , wherein a beam director is configured to steer the system output signals in a field of view,
a path of system output signal in the field of view having a contribution from the beam director and also from the signal director,
the contribution of the beam director to the path being movement of the system output signal on a two-dimensional path back and forth across the field of view, and
the contribution from the signal director to the path being movement of the system output signals transverse to the two-dimensional path contribution provided by the beam director.
12 . The system of claim 11 , wherein the beam director is a steerable mirror.
13 . The system of claim 12 , wherein the beam director is configured to concurrently scan the system output signal on a slow axis and a fast axis,
the beam director scanning the system output signal on the slow axis such that a direction that the system output signal travels away from the LIDAR system changes at a slow angular rate,
the beam director scanning the system output signal on the fast axis such that a direction that the system output signal travels away from the LIDAR system changes at a fast angular rate,
a ratio of the fast angular rate to the slow angular rate being more than 2:1 and less than 200:1.
14 . The system of claim 13 , wherein the contribution of the beam director to the path is movement of the system output signal in a zigzag pattern.
15 . The system of claim 1 , wherein a duration of the linear chirp cycle is more than 2 and less than 100 times a duration of each one of the output periods.
16 . The system of claim 1 , wherein the duration of each output period is greater than 1 μs and less than 10 μs.
17 . The system of claim 1 , wherein each of the system output signals carries a different wavelength channel and each of the system output signals travels aways from the LIDAR system in the same direction.
18 . The system of claim 1 , wherein the LIDAR system is configured to operate the signal director such that the switch channel carried by the system output signals is different for output periods that are sequential in time.