Systems and methods for minimizing motion sickness in vehicles
A motion sickness control system for a vehicle includes a vibrator. The motion sickness control system includes a sensor configured to measure vibration of the vehicle. The motion sickness control system includes a computer having a processor and a memory storing instructions executable by the processor to actuate the vibrator at a target frequency based on the measured vibration of the vehicle. The target frequency attenuates the measured vibration of the vehicle.
1. A motion sickness control system for a vehicle, the motion sickness control system comprising:
a vibrator;
a sensor configured to measure vibration of the vehicle;
a seat, the vibrator supported by the seat; and
a computer having a processor and a memory storing instructions executable by the processor to actuate the vibrator at a target frequency based on the measured vibration of the vehicle, wherein the target frequency attenuates the measured vibration of the vehicle; and
wherein the sensor is configured to measure an amplitude of the vibration of the vehicle, and wherein the instructions include instructions to actuate the vibrator at the target frequency upon determining the amplitude of the vibration is greater than a predetermined amplitude.
2. The motion sickness control system of claim 1 , wherein the seat includes a seat bottom having a cushion, and wherein the vibrator is supported within the cushion.
3. The motion sickness control system of claim 1 , wherein the seat includes a frame, and wherein the vibrator is fixed to the frame.
4. The motion sickness control system of claim 1 , further comprising a vehicle body, the vibrator fixed to the vehicle body.
5. The motion sickness control system of claim 1 , wherein the sensor is configured to measure a frequency of the vibration of the vehicle, and wherein the instructions include instructions to actuate the vibrator at a target amplitude based on the measured amplitude and frequency of the vibration.
6. The motion sickness control system of claim 1 , further comprising a biometric sensor, and wherein the instructions include instructions to actuate the vibrator upon determining data from the biometric sensor is indicative of motion sickness.
7. The motion sickness control system of claim 6 , wherein the biometric sensor is a camera configured to capture images of eyes of an occupant of the vehicle, and wherein the instructions include instructions to actuate the vibrator upon determining that images from the camera include predetermined eye movement indicative of motion sickness.
8. The motion sickness control system of claim 6 , wherein the biometric sensor is a heart rate sensor configured to measure a heart rate of an occupant of the vehicle, and wherein the instructions include instructions to actuate the vibrator upon determining that a heart rate detected by the heart rate sensor includes a predetermined characteristic indicative of motion sickness.
9. The motion sickness control system of claim 6 , wherein the biometric sensor is a brainwave sensor configured to measure brainwaves of an occupant of the vehicle, and wherein the instructions include instructions to actuate the vibrator upon determining that brainwaves detected by the brainwave sensor include a predetermined characteristic indicative of motion sickness.
10. The motion sickness control system of claim 6 , wherein the biometric sensor is a perspiration sensor configured to measure perspiration of an occupant of the vehicle, and wherein the instructions include instructions to actuate the vibrator upon determining that perspiration detected by the perspiration sensor includes a predetermined characteristic indicative of motion sickness.
11. The motion sickness control system of claim 1 , further comprising an active damper, and wherein the instructions include instructions to actuate the active damper at a damper target based on the measured vibration of the vehicle, wherein the damper target attenuates the measured vibration of the vehicle.
12. The motion sickness control system of claim 1 , further comprising an active damper, and wherein the instructions include instructions to predict a trajectory of the vehicle and to actuate the active damper based on the predicted trajectory to reduce motion sickness of an occupant of the vehicle.
13. The motion sickness control system of claim 12 , wherein the instructions include instructions to actuate the active damper to attenuate lateral acceleration experienced by the occupant along the predicted trajectory.
14. The motion sickness control system of claim 1 , further comprising:
an accelerometer configured to measure vertical acceleration of the vehicle;
an active damper configured to damp vertical movement of a wheel of the vehicle; and
wherein the instructions include instructions to actuate the active damper at a damper target based on the vertical acceleration detected by the accelerometer, wherein the damper target attenuates the measured vertical acceleration of the vehicle.
15. The motion sickness control system of claim 14 , wherein the damper target includes a target damping coefficient, and wherein the instructions include instructions to control a damping coefficient of the active damper based on the target damping coefficient.
16. The motion sickness control system of claim 14 , wherein the instructions include instructions to predict a trajectory of the vehicle and to actuate the active damper based on the predicted trajectory to reduce motion sickness of an occupant of the vehicle.
17. The motion sickness control system of claim 16 , wherein the instructions include instructions to actuate the active damper to attenuate lateral acceleration experienced by the occupant along the predicted trajectory.