Ascent and buoy system for divers
An apparatus for divers is disclosed that includes both a buoy and an ascent device. The system also includes a biological sensor for detecting when a diver is in distress. Upon the biological sensor detecting an anomalous condition, the system inflates a bladder, such as that found in a diver's Buoyancy Control Device, to urge the diver toward the water surface. The system also releases a buoy, allowing the buoy to float to the water surface and alert others of the diver in distress. In an example embodiment, the buoy detects its position upon reaching the surface and issues an alarm.
1. An apparatus for a diver comprising:
a sensor configured to measure a biological parameter of the diver and transmit a sensor signal correlated to a biological parameter value;
a controller in communication with the sensor and configured to:
receive the sensor signal, and
determine that the biological parameter value correlated to the sensor signal is anomalous and responsively issue a rescue deployment signal; and
a buoyancy control bladder;
a buoyancy valve assembly having
an inlet port connectable to a source of pressurized gas, and
an outlet port connected to the bladder,
the buoyancy valve assembly configured to receive the rescue deployment signal and responsively supply pressurized gas from the inlet port to the outlet port, whereby gas enters the bladder and the apparatus becomes more buoyant in water and ascends;
a buoy connectable to the diver; and
a buoy release actuator configured to receive the rescue deployment signal and responsively disengage the buoy from the diver.
2. An apparatus as claimed in claim 1 wherein the buoy is supernatant and includes an alarm.
3. An apparatus as claimed in claim 1 wherein the buoy is inflatable and includes an alarm and wherein the buoy release actuator includes a buoy valve having an inlet port connectable to a source of pressurized gas and an outlet port connected to the buoy, the buoy valve configured to receive the rescue deployment signal and responsively provide pressurized gas from the inlet and to the outlet port.
4. An apparatus as claims in claim 3 further comprising a tether connecting the diver and buoy.
5. An apparatus as claimed in claim 4 wherein the tether is a communication cable.
6. An apparatus as claimed in claim 1 further comprising a diver-activatable input device configured to provide a stop signal upon activation, the diver activatable input device being in communication with the controller, and wherein the controller is further configured to:
issue a warning alarm and begin measuring a time interval in response to determining that the biological parameter value correlated to the sensor signal is anomalous;
detect a stop signal during the time interval; and
issue a rescue deployment signal only if the controller does not detect a stop signal from the diver-activatable input device during the time interval.
7. An apparatus as claimed in claim 6 wherein the warning alarm is an audible alarm, whereby the alarm may alert the diver to activate the diver-activatable input device and stop the controller from issuing the rescue deployment signal.
8. An apparatus as claimed in claim 7 wherein:
the controller is further configured to determine a rate of ascent for the apparatus and responsively issue an ascent control signal; and
the buoyancy valve assembly includes a vent port and is further configured to receive the ascent control signal and responsively release gas from the vent port, whereby a rate of ascent of the apparatus is controlled.
9. An apparatus as claimed in claim 8 wherein apparatus includes a wearable housing and the sensor and controller are both within the housing.
10. An apparatus as claimed in claim 9 wherein the biological parameter is a pulse of the diver.
11. An apparatus as claimed in claim 9 wherein the biological parameter is a blood oxygen content level of the diver.
12. An apparatus as claimed in claim 9 wherein the biological parameter is a blood carbon monoxide content level of the diver.