Elevator auxiliary torque device, elevator and control method for elevator
A technology of assisting torque and assisting the motor, which is applied in the control of the speed or torque of the motor, the control system, the elevator in the building, etc., which can solve the problem of inability to effectively deal with the accidental slipping of the car and the inability to effectively brake the car and other problems to achieve the effect of avoiding accidental slipping and impact
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Embodiment 1
[0038] see figure 1 The structure schematic diagram of the elevator auxiliary torque device of the present invention is shown, the elevator auxiliary torque device of the present invention includes: an auxiliary motor for generating auxiliary torque, for storing the electric energy generated by the auxiliary motor and An energy storage device for supplying stored electrical energy to the auxiliary motor when the motor is running electrically, a power converter for converting the electrical energy generated by the auxiliary motor, and an auxiliary torque control for controlling the power converter and an auxiliary torque transfer device for transferring the auxiliary torque generated by the auxiliary motor to the elevator. The auxiliary motor is an induction motor or a permanent magnet synchronous gearless traction machine; the energy storage device can be one or more combinations of batteries, supercapacitors and nanocapacitors, and the charging state of the energy storage dev...
Embodiment 2
[0044] see figure 2 The structure schematic diagram of the elevator auxiliary torque device of the present invention is shown. This embodiment is similar to the first embodiment, and only the difference between it and the first embodiment will be described below. The power converter is a three-phase auxiliary inverter composed of power switches such as IGBT and MOSFET. The auxiliary torque controller first calculates the current difference between the auxiliary motor torque command (actually a torque current command) and the detected current of the auxiliary motor, and then sends the current difference to a current controller, Finally, the current controller outputs a control signal to control the auxiliary inverter according to the input current difference, so that the auxiliary torque generated by the auxiliary motor tracks the torque command of the auxiliary motor. The auxiliary torque controller monitors the charging state of the energy storage device in real time when ...
Embodiment 3
[0046] see image 3 The structure schematic diagram of the elevator auxiliary torque device of the present invention is shown. This embodiment is similar to the first embodiment, and only the difference between it and the first embodiment will be described below. The elevator auxiliary torque device shown in this embodiment adds an energy consumption circuit and an energy consumption controller on the basis of the first embodiment. The energy consumption circuit is composed of a energy consumption resistor and a switch circuit connected in parallel to both ends of the DC side of the auxiliary inverter. The energy consumption controller controls the switch circuit according to the DC side voltage of the auxiliary inverter, and closes the switch circuit when the DC side voltage of the auxiliary inverter exceeds a predetermined value, so as to realize energy saving. The power consumption of the resistor.
[0047] When the state of charge of the energy storage device reaches it...
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