The present disclosure relates to a parameter sensing and operator display/alert system for use with an automotive vehicle.
Drivers of high performance automobiles frequently find it advantageous to perform manual control functions, such as transmission gear selection, in accord with engine operating parameters such as engine speed. As powerplants, including underhood wiring and plumbing, have become more complex, it has grown increasingly more difficult to provide the wiring and other utilities needed to accommodate aftermarket sensing devices intended to alert the driver of the desirability, if not the necessity, of shifting the transmission or taking other action. Moreover, commonly available sensing devices have not generally evolved to accommodate the powertrain complexity extant today. It would be desirable to provide an indicator system which is both flexible in terms of alerting capability, and compatible with power adders and multiple powertrain operating modes.
According to an aspect of the present invention, a remote indicator for an automotive vehicle includes a sensor unit determining the value of at least one vehicle prime mover operating parameter and generating a wireless signal corresponding to the sensed value, and a receiver receiving the signal wirelessly and displaying an indication of the signal to a vehicle occupant.
As used herein, the term “prime mover” means a power source such as an engine, motor, or fuel cell/motor combination, and an associated transmission, or yet other types of devices for converting chemical energy into mechanical energy.
According to another aspect of the present invention, in a preferred embodiment the sensor unit determines the operating speed of a vehicle's engine and wirelessly transmits a shift signal when the engine has reached a predetermined speed at which a vehicle transmission should be shifted to another gear by the vehicle's operator. The receiver displays a visible, audible, or haptic indication of the shift signal.
According to yet another aspect of the present invention, the value of a predetermined engine speed which triggers the operator display may be dependent upon the operational state of a power adder applied to the vehicle's engine. The power adder may be either a nitrous oxide system, a turbocharging system, a supercharging system, or other type of device which temporarily increases engine output.
According to another aspect of the present invention, a method for providing a vehicle occupant with task-related information concerning operation of a vehicle prime mover includes the steps of sensing at least one prime mover operating parameter using a sensor unit located within the vehicle in proximity to the prime mover, and generating a parametric signal corresponding to the sensed value of the operating parameter. Then, the parametric signal is transmitted wirelessly to a receiver located remotely from the sensor unit. The receiver presents an indication of the value of the parametric signal to an operator of the vehicle.
It is an advantage of the present indicator system that a variety of vehicle operating parameters may be sensed and alerts presented to a vehicle driver without the need for wiring extending between the source of the operating parameter, such as a prime mover, and the vehicle's passenger compartment. The present indicator system is therefore ideally suited for application in the automotive aftermarket.
It is another advantage of the present indicator system that the system may be selectively adjusted to trigger different shift signal ranges, with the engine speeds being dependent upon an operational state of an engine, such as whether a power adder has been activated.
It is another advantage of the present indicator system that haptics capability renders the system more useful in noisy and light-disrupted environments.
Other advantages, as well as features of the present invention, will become apparent to the reader of this specification.
As shown in
Prime mover 12 is also equipped with a sensor unit, 16, which determines the value of at least one vehicle or engine operating parameter, such as engine speed and transmission gear. Sensor unit 16 generates a wireless signal corresponding to the sensed value of the operating parameter.
Wireless signals from sensor unit 16 are received by a receiver, which is shown generally at 20 in
It should be understood that the foregoing description and the embodiments thereof are merely illustrative of many possible implementations of the present invention and are not intended to be exhaustive.