Real time alert for landing airplanes
View Patent ↗A dynamic ground distance training system and method of training for pilots including one or more emitters facing downward direct signal of focused energy (or sound and/or light) towards the runway and said focused energy signal is reflected from the runway; the reflected signal is received by one or more receivers positioned generally downward; and, the energy signal is processed via microprocessor(s) and a distance based on the time intervals when sampling signal reflections is determined.
1 . A dynamic ground distance training system for pilots comprising:
one or more emitters facing downward direct signal of focused energy (or sound and/or light) towards the runway;
said focused energy signal is reflected from the runway;
the reflected signal is received by one or more receivers positioned generally downward; and,
the energy signal is processed by a computing device via microprocessor(s) and at least one of vertical and horizontal distances based on the time intervals when sampling signal reflections is determined;
an interface module in signal communication with the computing device configured to provide at least audible feedback through at least one headset; and,
wherein the audio feedback issues an alert including but not limited to an audible “go around” command if the aircraft is entering an oscillation when in positioned in the GEZ during attempted landing.
2 . The dynamic ground distance training system for pilots of claim 1 , wherein when the aircraft, is in the ground effect zone (GEZ) the audible feedback changes as the aircraft gets closer or further from the height of the runway surface underneath the aircraft.
3 . The dynamic ground distance training system for pilots of claim 1 , further comprising the audible feedback issues an alert including but not limited to a “go around” command if the aircraft exceeds a threshold.
4 . The dynamic ground distance training system for pilots of claim 1 , further comprising the computing at least uses sampled measurements of the aircraft vertical or horizontal distance measurements between a first bounce on the runway and a second bounce on to decide to issue the alert.
5 . The dynamic ground distance training system for pilots of claim 1 , wherein the computing at least uses sampled measurements of the aircraft's horizontal distance between the first bounce on the runway and the second bounce to decide to issue the alert.
6 . The dynamic ground distance training system for pilots of claim 1 , wherein the computing at least uses sampled measurements of the aircraft's speed between the first bounce on the runway and the second bounce to decide to issue the alert.
7 . A dynamic landing training system for pilots comprising:
one or more emitters facing downward direct signal of focused energy (or sound and/or light) towards the runway;
said focused energy signal is reflected from the runway;
the reflected signal is received by one or more receivers positioned generally downward;
the energy signal is processed by a computing device via microprocessor(s) and at least one of distances and speed based on the time intervals between the sampled signal reflections is determined;
an interface module in signal communication with the computing device configured to provide at least audio feedback;
wherein when the aircraft is in the ground effect zone (GEZ) the audio feedback changes as the aircraft gets closer or further from the height of the runway surface underneath the aircraft; and,
the computing at least uses sampled measurements of the aircraft vertical or horizontal distance measurements after a first bounce on the runway and alerts the pilot to take corrective action.
8 . The dynamic landing training system for pilots of claim 7 , wherein the alert is one of “go around” and “add power”.
9 . A dynamic method of aircraft landing training, the method comprising:
affix to an aircraft one or more emitters facing downward direct signal of focused energy (or sound and/or light) towards the runway;
affix to the aircraft one or more receivers facing downward towards the runway;
wherein and said focused energy signal is reflected from the runway and received by the one or more receivers;
the reflected energy signal is processed by a computing device via microprocessor(s) and at least one of distances and speed based on the time intervals between the sampled signal reflections is determined;
providing an interface module in signal communication with the computing device configured to produce the audio feedback;
wherein when the aircraft is in a ground effect zone (GEZ) audio feedback indicates changes as the aircraft gets closer or further from the height of the runway surface underneath the aircraft; and,
wherein when the aircraft is in the ground effect zone (GEZ) and if the aircraft is in an oscillation relative to the runway and the oscillation exceeds a threshold then the audio feedback is at least an alert including but not limited to a “go around”.
10 . The dynamic method of aircraft landing of claim 9 , wherein when the aircraft is in the ground effect zone (GEZ) the audio feedback changes in a first fashion as the aircraft gets closer to the runway surface and changes in a second fashion as the aircraft gets further from the runway surface.
11 . The dynamic method of aircraft landing of claim 9 , wherein when the aircraft is in the ground effect zone (GEZ) and the vertical or horizontal position of the aircraft relative to the runway exceeds a threshold then the audio feedback is at least an alert including but not limited to a “go around”.