Commodities airlifting system and method of airlifting commodities
A commodities airlifting system includes a self-propellable robot, an aircraft which carries commodities and the robot, and a lowering/loading apparatus which at least enables the robot to get off on the ground from the aircraft and to get on the aircraft from the ground, in a state where the aircraft is landed or a state where the aircraft is hovering. The robot which got off on the ground from the aircraft again gets on an aircraft.
1 . A commodities airlifting system, comprising:
a self-propellable robot;
an aircraft that carries commodities and the robot; and
a lowering/loading apparatus that at least enables the robot to get off on the ground from the aircraft and to get on the aircraft from the ground, in a state where the aircraft is landed or a state where the aircraft is hovering,
wherein the robot that got off on the ground from the aircraft again gets on an aircraft, and
wherein the robot comprises a winch, a suction part and a hook, the suction part positioned to reach a hooked part disposed around an opening of the aircraft and configured to engage the hook with the hooked part, the winch configured to pass the robot through the opening and the suction part configured to release the hook from the hooked part, thereby allowing the robot to get off on the ground from the aircraft by itself.
2 . The commodities airlifting system of claim 1 , wherein the robot takes out the commodities from the aircraft in a state where the aircraft is landed at a first location or a state where the aircraft is hovering above the first location, then transports the taken-out commodities to a second location distant from the first location by being self-propelled, and puts the transported commodities on the second location.
3 . The commodities airlifting system of claim 1 , wherein the robot comprises a robot arm configured to load the commodities onto the aircraft, and the robot locks, by itself, the robot arm in a state where the robot is carried on the aircraft, and when the robot gets off from the aircraft, the robot unlocks by itself, and then is self-propelled.
4 . The commodities airlifting system of claim 1 , wherein the robot locks by itself after the robot gets on the aircraft, or the robot gets on the aircraft after the robot locks by itself.
5 . The commodities airlifting system of claim 1 , wherein the robot is self-propelled to a given operation location, and performs a work at the operation location.
6 . The commodities airlifting system of claim 1 , wherein the robot includes a placing part where the commodities are to be placed, and
wherein a part of the robot that handles the commodities places the commodities on the placing part, and removes from the placing part the commodities placed on the placing part.
7 . The commodities airlifting system of claim 1 , further comprising a remote operation unit for an operator to remotely operate the robot.
8 . The commodities airlifting system of claim 7 , further comprising an imaging unit that images a situation around the robot; and a display unit that displays the image captured by the imaging unit to the operator.
9 . The commodities airlifting system of claim 1 , wherein the robot is program-controlled.
10 . The commodities airlifting system of claim 1 , wherein the commodities include a cargo, baggage, or relief supplies.
11 . A method of airlifting commodities, comprising the steps of:
using a self-propellable robot, an aircraft that carries the commodities and the robot, and a lowering/loading apparatus that at least enables the robot to get off on the ground from the aircraft, and to get on the aircraft from the ground, in a state where the aircraft is landed or a state where the aircraft is hovering, wherein the robot comprises a winch, a suction part and a hook, the suction part positioned to reach a hooked part disposed around an opening of the aircraft, the robot getting off on the ground by itself by the suction part engaging the hook with the hooked part, the winch passing the robot through the opening and the suction part then releasing the hook from the hooked part; and
again getting on an aircraft the robot that got off on the ground from the aircraft.
12 . The method of claim 11 , comprising the steps of:
taking out, by the robot, the commodities from the aircraft in a state where the aircraft is landed at a first location or a state where the aircraft is hovering above the first location;
then transporting, by the robot being self-propelled, the taken-out commodities to a second location distant from the first location; and
putting, by the robot, the transported commodities on the second location.
13 . The method of claim 11 , wherein the robot comprises a robot arm configured to load the commodities onto the aircraft, and the robot locks, by itself, the robot arm in a state where the robot is carried on the aircraft, and when the robot gets off from the aircraft, the robot unlocks by itself, and then is self-propelled.
14 . The method of claim 11 , wherein the robot locks by itself after the robot gets on the aircraft, or the robot gets on the aircraft after the robot locks by itself.
15 . The method of claim 11 , wherein the robot is self-propelled to a given operation location, and performs a work at the operation location.
16 . The method of claim 11 , wherein the robot includes a placing part where the commodities are to be placed, and
wherein a part of the robot that handles the commodities places the commodities on the placing part, and removes from the placing part the commodities placed on the placing part.
17 . The method of claim 11 , comprising remotely operating the robot by using a remote operation unit.
18 . The method of claim 17 , further comprising the steps of:
imaging, by an imaging unit, a situation around the robot; and
displaying, by a display unit, the image captured by the imaging unit to an operator.
19 . The method of claim 11 , comprising program-controlling the robot.
20 . The method of claim 11 , wherein the commodities include a cargo, baggage, or relief supplies.