Nova Patents
EP2388674A1

Control of a waterjet propelled vessel

Abstract

The invention is related to a method for controlling roll out of a watercraft, comprising: determining whether a nozzle control apparatus is off center to alter a position of a nozzle of the watercraft (132); if the nozzle control apparatus is off center, setting a nozzle control command to a nozzle control apparatus command (134); determining whether the nozzle control apparatus has been returned to a center position; if the nozzle control apparatus has been returned to a center position, setting a nozzle control command to oppose a turn of the watercraft (142).

EP2388674A1, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 1 December 2024, 1.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

10 claims: 8 independent, 2 dependent

  1. 1
    A method for controlling roll out of a watercraft, comprising:determining whether a nozzle control apparatus is off center to alter a position of a nozzle of the watercraft;if the nozzle control apparatus is off center, setting a nozzle control command to a nozzle control apparatus command;determining whether the nozzle control apparatus has been returned to a center position;if the nozzle control apparatus has been returned to a center position, setting a nozzle control command to oppose a turn of the watercraft.
  2. 4
    A method as in anyone of claims 1-3, and further comprising;after the setting of the nozzle control command to the negative of the heading rate multiplied by the constant factor, determining whether the nozzle control apparatus has been returned to off center and if so, repeating the steps from setting the nozzle control command to the nozzle control apparatus command.
  3. 5
    A method as in anyone of claims 1-4, and further comprising:after the setting of the nozzle control command to the negative of the heading rate multiplied by the constant factor, determining whether the nozzle control apparatus is still in the center position, and if so, determining whether the heading rate is below a first predetermined threshold indicating that turning of the watercraft has essentially stopped;if the heading rate is not below the first predetermined threshold, returning to the step of setting of the nozzle control command to the negative of the heading rate multiplied by the constant factor and repeating the steps thereafter.
  4. 6
    A method as in anyone of claims 1-5, and further comprising:if the heading rate is below the first predetermined threshold, returning to the first step of determining whether the nozzle control apparatus is off center and repeating the steps thereafter.
  5. 7
    A method as in anyone of claims 1-6, and further comprising:reducing any heading sensor filtering prior to determining whether the nozzle control apparatus has returned to center;prior to determining whether the heading rate is below the first predetermined threshold and after the step of determining whether the nozzle control apparatus is still in the center position, restoring the heading sensor filtering if the heading rate is below a second predetermined threshold, higher than the first predetermined threshold, indicating that turning of the watercraft has essentially stopped based on unfiltered heading sensor data, with the first predetermined threshold being based on filtered heading sensor data.
  6. 8
    A method as in anyone of claims 1-7, and further comprising:changing heading sensor filtering as a function of a heading rate.
  7. 9
    A method as in anyone of claims 1-8, wherein the nozzle control apparatus is a joystick control.
  8. 10
    A method as in anyone of claims 1-9, wherein the nozzle control apparatus is a joystick control.