Sentences with phrase «rate feedback control»

Of note is a special GT - R - specific yaw - rate feedback control, which measures the differences between the target yaw rate calculated from steering angle and actual yaw rate detected by the yaw - rate sensor and G sensor to adjust torque bias.
GT - R specific yaw - rate feedback control, measuring differences between the target yaw rate calculated from steering angle, actual yaw rate detected by the yaw - rate sensor and G sensor to adjust torque bias
A special GT - R - specific yaw - rate feedback control measures the differences between the target yaw rate calculated from the steering angle and actual yaw rate detected by the yaw - rate sensor and G sensor, and adjusts the torque bias accordingly.
AYC now features yaw rate feedback control using a yaw rate sensor to more accurately determine the cornering dynamics on a real - time basis.
It also has a yaw - rate feedback control system, effectively managing slip angle.
S - AWC also now employs yaw rate feedback control.

Not exact matches

Through our exclusive habitat control panel within our App, you will be able to easily access future Petrics products like our Climate Controlled Smart Pet Bed and Activity Tracker collar where you can identify activity and caloric burn rates, providing a feedback loop to ensure that the diet, weight, and activity align for your pet's personalized needs, all while providing the most comfortable temperature for your pet.
Version control We received a feedback form from our local council asking how we, as an MP's office, rate their case - working department.
Heart Rate Variability (HRV) is a shortcut to a deep meditative state through mindfulness and pranayama (breath control)-- it gives you feedback on how Zen you are, which lets you train yourself to get in the zone within minutes and stay there.
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The feedback control suite includes yaw - rate, differential - rotation suppression control and VDIM cooperative control.
Based on the understanding of both the physical processes that control key climate feedbacks (see Section 8.6.3), and also the origin of inter-model differences in the simulation of feedbacks (see Section 8.6.2), the following climate characteristics appear to be particularly important: (i) for the water vapour and lapse rate feedbacks, the response of upper - tropospheric RH and lapse rate to interannual or decadal changes in climate; (ii) for cloud feedbacks, the response of boundary - layer clouds and anvil clouds to a change in surface or atmospheric conditions and the change in cloud radiative properties associated with a change in extratropical synoptic weather systems; (iii) for snow albedo feedbacks, the relationship between surface air temperature and snow melt over northern land areas during spring and (iv) for sea ice feedbacks, the simulation of sea ice thickness.
The basic results of this climate model analysis are that: (1) it is increase in atmospheric CO2 (and the other minor non-condensing greenhouse gases) that control the greenhouse warming of the climate system; (2) water vapor and clouds are feedback effects that magnify the strength of the greenhouse effect due to the non-condensing greenhouse gases by about a factor of three; (3) the large heat capacity of the ocean and the rate of heat transport into the ocean sets the time scale for the climate system to approach energy balance equilibrium.
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