Method and apparatus for controlling an electric motor of an elevator without an encoder
US-9731935-B2 · Aug 15, 2017 · US
US10029883B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10029883-B2 |
| Application number | US-201615270857-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 20, 2016 |
| Priority date | Oct 8, 2015 |
| Publication date | Jul 24, 2018 |
| Grant date | Jul 24, 2018 |
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An elevator includes an elevator car and lifting machinery including a traction sheave, an electromechanical machinery brake, and an electric motor having a rotor. The traction sheave, the electromechanical machinery brake and the rotor of the electric motor are connected via a shaft, whereby the lifting machinery moves the elevator car upwards and downwards in a vertically extending elevator shaft controlled by a main control unit. The direction of rotation and the rotation speed of the rotor of the electric motor is detected with a sensor, the amplitude of the brake current provided to the machinery brake is measured, the amplitude of the brake current is increased until a first moment when the shaft and thereby also the rotor of the electric motor starts to rotate, which is detected by the sensor, the brake current is disconnected momentarily at the first moment, the torque acting on the shaft and the corresponding load in the elevator car at the first moment is determined based on the measured amplitude of the brake current at the first moment, whereby said torque is used in the main control unit for controlling the lifting machinery.
Opening claim text (preview).
The invention claimed is: 1. A method for controlling an elevator, the elevator comprising an elevator car and lifting machinery comprising a traction sheave, an electromechanical machinery brake, and an electric motor having a rotor, the traction sheave, the electromechanical machinery brake and the rotor of the electric motor being connected via a shaft, whereby the lifting machinery moves the elevator car upwards and downwards in a vertically extending elevator shaft controlled by a main control unit, the method comprising the steps of: measuring a direction of rotation and a rotation speed of the rotor of the electric motor with a sensor before and after a rotation of the electric motor occurs; measuring an amplitude of a brake current provided to the machinery brake; the main control unit instructing a brake controller to gradually loosen the machinery brake so as to increase the amplitude of the brake current until a first moment when the shaft and the rotor of the electric motor starts to rotate, the first moment being detected by the sensor by measuring the direction of rotation and the rotation speed of the rotor, and being transmitted to the main control unit; determining a torque acting on the shaft and the corresponding load in the elevator car at the first moment based on the measured amplitude of the brake current at the first moment, whereby said torque is used in the main control unit for controlling the lifting machinery; and disconnecting the brake current at the first moment when the shaft and the rotor of the electric motor starts to rotate. 2. The method for controlling an elevator according to claim 1 , further comprising the steps of: setting the electric motor to produce the determined torque in a direction opposite to the measured direction of rotation of the shaft at the first moment; and increasing the amplitude of the brake current again until the machinery brake is totally open, whereby the elevator car remains stationary until the lifting machinery is set to change the torque acting on the shaft in order to start movement of the elevator car in a desired direction upwards or downwards in the elevator shaft.
actuated by rotating motor; Details, e.g. ventilation (roping on drum, sheave, winch or pulley B66B11/0065; power supply or control B66B1/28, H02P; motor construction H02K) · CPC title
effective on braking devices {, e.g. acting on electrically controlled brakes (brake control H02P, lift brakes per se B66B5/02)} · CPC title
electric · CPC title
with starting torque control · CPC title
Control system configuration, i.e. lay-out · CPC title
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