Personal watercraft for amplifying manual rowing or paddling with propulsion
A powered watercraft system including a watercraft body having a propulsion system, a foot swimfin, a sensor configured to measure a value indicative of a manually-generated time-variable first propulsive force resulting from a leg motion to the foot swimfin to move the watercraft body, and a controller configured control the propulsion system to generate a second propulsive force for powering the watercraft body based on the value indicative of the first propulsive force, the generated second propulsive force being at least partially contemporary with the first propulsive force.
1. A powered watercraft system comprising:
a watercraft body having a propulsion system;
a foot swimfin;
a sensor configured to measure a value indicative of a manually-generated time-variable first propulsive force resulting from a leg kicking motion with the foot swimfin to move the watercraft body; and
a controller configured to control the propulsion system to generate a second propulsive force for powering the watercraft body based on the value indicative of the first propulsive force, the generated second propulsive force being at least partially contemporary with the first propulsive force.
2. The powered watercraft system according to claim 1 , wherein the watercraft body is a bodyboard, a diving propulsion device, or a jetpack.
3. The powered watercraft system according to claim 1 , wherein the sensor is attached to the foot swimfin.
4. The powered watercraft system according to claim 3 , wherein the sensor includes a bending measurement device operatively attached to the foot swimfin, and the value indicative of the first propulsive force includes a bending of at least a part of the foot swimfin.
5. The powered watercraft system according to claim 3 , wherein the sensor includes a flow meter attached to the foot swimfin, and the value indicative of the first propulsive force includes a water flow generated by the foot swimfin.
6. The powered watercraft system according to claim 3 , wherein the sensor includes an accelerometer measuring accelerations of the foot swimfin, and the value indicative of the first propulsive force includes an acceleration of the foot swimfin caused by the leg kicking motion.
7. The powered watercraft system according to claim 1 , wherein the sensor includes an accelerometer measuring accelerations of the watercraft body, and the value indicative of the first propulsive force includes an acceleration of the watercraft body caused by the first propulsive force.
8. A powered watercraft system comprising:
a kayak, canoe, surfboard, rowing boat, or stand-up paddleboard having a watercraft body;
a propulsion system;
a sensor configured to measure a value indicative of a manually-generated first propulsive force resulting from an arm motion of the user to move the watercraft body; and
a controller configured to control the propulsion system to generate a second propulsive force for powering the watercraft body based on the value indicative of the first propulsive force.
9. The powered watercraft system according to claim 8 , wherein the controller is configured to process the value indicative of the first propulsive thrust to generate a set value for the propulsion system to generate the second propulsive force to be proportional to a factor k to the first propulsive force.
10. The powered watercraft system according to claim 8 , wherein the sensor includes a bending measurement device operatively attached to a paddling device operated by the user, and the value indicative of the first propulsive force is a bending of at least a part of the paddling device.
11. The powered watercraft system according to claim 8 , wherein the sensor includes a flow meter measuring a water flow caused by a paddling device operated by the user, and the value indicative of the first propulsive force is the water flow caused by the paddling device.
12. The powered watercraft system according to claim 8 , wherein the sensor includes an orientation sensor attached to a paddling device operated by the user, and the value indicative of the first propulsive force is determined based on values of the orientation sensor.
13. The powered watercraft system according to claim 12 , wherein the orientation sensor includes an inertial measurement unit.
14. The powered watercraft system according to claim 8 , wherein the sensor includes an acceleration sensor measuring accelerations to the watercraft body, the value indicative of the first propulsive force is determined based on acceleration values from the acceleration sensor caused by the first propulsive force.
15. The powered watercraft system according to claim 8 , further comprising:
a paddling device; and
a water presence detection sensor to detect whether the paddling device is being in contact with the water.
16. An upper body wearable item for watersports comprising:
an accelerometer placed on the wearable item for measuring a motion of an arm of a user;
a controller in operative connection with the accelerometer configured to determine a value indicative of a manually-generated first propulsive force resulting from the measuring of the motion of the arm of the user to move a watercraft body operated by the user; and
a telecommunication device operatively connected to the controller for sending data indicating the value to an external device.
17. The wearable item of claim 16 , further comprising:
a second accelerometer placed on the wearable item for measuring a motion of another arm of the user.
18. The power watercraft system of claim 1 , wherein the value indicative of the manually-generated time-variable first propulsive force includes a frequency of the leg kicking motion.
19. The power watercraft system of claim 8 , wherein the value indicative of the first propulsive force includes a frequency of the arm motion.
20. The power watercraft system of claim 8 , wherein the generated second propulsive force is at least partially contemporary with the first propulsive force.