Bathy-drone: an autonomous unmanned drone-tethered sonar system
Various examples are provided related to autonomous unmanned drone-tethered sonar systems. In one embodiment, a bathy-drone system includes an unmanned payload vessel and an unmanned drone tethered to the payload vessel through the tether attachment point. The unmanned payload vessel can include a sensor or sensor suite coupled to a bottom of the payload vessel and a tether attachment point through which propulsive force can be applied to the payload vessel. The drone can autonomously transport the payload vessel to and from a survey location and autonomously propel the payload vessel along a survey path at the survey location.
1 . A Bathy-drone system, comprising:
an unmanned payload vessel comprising a sensor or sensor suite coupled to a bottom of the payload vessel and a tether attachment point through which propulsive force is applied to the payload vessel, the payload vessel comprising a trim plate extending from a stern of the payload vessel; and
an unmanned drone tethered to the payload vessel through the tether attachment point, the unmanned drone capable of autonomously transporting the payload vessel to and from a survey location and autonomously propelling the payload vessel along a survey path at the survey location, where the trim plate is angled downward aft of the stern thereby providing a speed-dependent pitching moment that maintains the payload vessel level as it is propelled by the unmanned drone.
2 . The Bathy-drone system of claim 1 , wherein a force exerted on the payload vessel by the unmanned drone through the tether attachment point passes through a center of gravity of the payload vessel.
3 . The Bathy-drone system of claim 1 , wherein the payload vessel is unmanned aircraft system (UAS) agnostic allowing any unmanned drone to tow the payload vessel without prior modification.
4 . The Bathy-drone system of claim 1 , wherein the payload vessel has a weight, and the unmanned drone can carry the weight of the payload vessel.
5 . The Bathy-drone system of claim 1 , wherein the trim plate is configured to maintain the payload vessel level in a speed range from zero to about 24 km/h.
6 . The Bathy-drone system of claim 5 , wherein the trim plate is weighted to maintain the payload vessel level at standstill.
7 . The Bathy-drone system of claim 1 , wherein the trim plate comprises fins extending below the trim plate.
8 . The Bathy-drone system of claim 7 , wherein the payload vessel pivots about the fins.
9 . The Bathy-drone system of claim 1 , wherein the trim plate acts as an electrical ground for the sensor or sensor suite.
10 . The Bathy-drone system of claim 1 , wherein the payload vessel comprises a skiff-like hull design.
11 . The Bathy-drone system of claim 10 , comprising an autopilot configured to independently steer the payload vessel by a rudder.
12 . The Bathy-drone system of claim 1 , wherein the payload vessel is configured to transmit data collected by the sensor or sensor suite via an on-board telemetry link.
13 . The Bathy-drone of claim 12 , wherein the collected data comprises one or more of water temperature, turbidity, salinity, dissolved oxygen, nitrogen, depth, position, heading, or imagery.
14 . The Bathy-drone system of claim 12 , wherein the payload vessel is configured to communicatively couple to the unmanned drone, and the collected data is transmitted to a base station via the telemetry link.
15 . The Bathy-drone system of claim 1 , wherein the sensor or sensor suite is affixed to the bottom of the payload vessel.
16 . The Bathy-drone system of claim 1 , wherein the sensor or sensor suite comprises a sonar transducer.