Description
hardware flow control. It is an ideal choice in the field of industrial automation.
Distinguished according to whether there is a position sensor, first of all, it is divided into sensing
and non-sensing. That is, whether Hall or other similar position sensors are used to sense the
position angle of the stator and rotor. In air pump applications, many use non-inductive control.
The excellent algorithm of through-hole is that after the motor is running, it detects the changes in
phase current to switch the phase current. In some heavy-duty or precise control applications,
sensory methods are used.
According to the three-phase power supply of the inverter, it can be divided into square wave control
and sine wave control. The square wave control strategy is simple, and the control process is direct
and effective. It adopts a six-step commutation strategy. The CPU modulates the PWM to drive the
power switch tube to generate a three-phase power supply that can run the motor. The control strategy
of sine wave is relatively complex, but the control effect is much better.
In sine wave control, there are two main control strategies.
One is direct torque control DTC Baidu Encyclopedia. The method is to calculate the estimated values
of motor flux and torque based on the measured motor voltage and current. After controlling the torque,
the motor speed can also be controlled. Direct torque control is a patent of the European ABB company. .
The second is, space vector control FOC Baidu Encyclopedia. Its essence is to equate an AC motor to a DC
motor, and independently control the speed and magnetic field components. By controlling the rotor flux linkage,
and then decomposing the stator current, the two components of torque and magnetic field are obtained. After
coordinate transformation, the normal motor is realized. handover or decoupling control.
During sine wave control, there are many derived more sophisticated control strategies, such as feedforward
control, maximum torque control, field weakening control, etc.
In the process of controlling the motor, there are multiple feedback control loops. When controlling the output
of the motor, there is a current loop; on this basis, there is a control loop that controls the speed; when a servo
motor is used, there is a position loop control.
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3500/22M 146031-01 BENTLY overspeed protection module
3500/22-01-01-00 Temperature monitor BENTLY
3500/22M 288055-01 Transient Data Interface BENTLY
3500/42M 176449-02 Temperature monitor BENTLY
1701/10-01 Transient Data Interface BENTLY
3500/42M 176449-02 Transient Data Interface BENTLY
3500/15 114M5335-01 Transient Data Interface BENTLY
135799-01 BENTLY overspeed protection module
3500/22M 138607-01 BENTLY overspeed protection module
3500/40M 176449-01 BENTLY vibration monitoring system
3500/15 127610-01 Temperature monitor BENTLY
3500/05-01-01-01-00-00 BENTLY4 Channel Relay Module
1701/15-01 BENTLY overspeed protection module
128275-01 Transient Data Interface BENTLY
3500/15 127610-01 BENTLY4 Channel Relay Module
135473-01 BENTLY vibration monitoring system
106M1081-01 BENTLY overspeed protection module
125800-01 Transient Data Interface BENTLY
3500/05-01-01-00-00-00 BENTLY vibration monitoring system
3500/22-01-01-01 BENTLY vibration monitoring system
136719-01 Transient Data Interface BENTLY
3500/15 127610-01 Temperature monitor BENTLY
3500/15 127610-01 Temperature monitor BENTLY
3500/42M 176449-02 Temperature monitor BENTLY
146031-01 Temperature monitor BENTLY
3500/22M 288055-01 Transient Data Interface BENTLY
3500/40M 176449-01 Temperature monitor BENTLY
1701/10-01 Transient Data Interface BENTLY
136188-02 Transient Data Interface BENTLY
3500/92 136180-01 BENTLY4 Channel Relay Module
3500/15 127610-01 Transient Data Interface BENTLY
3500/42-01-00 Temperature monitor BENTLY
3500/22M 288055-01 Temperature monitor BENTLY
136188-02 Temperature monitor BENTLY
3500/42M 128229-01 BENTLY overspeed protection module
3500/62-04-01 Temperature monitor BENTLY
3500/40M BENTLY4 Channel Relay Module
3500/42M 140734-02 BENTLY4 Channel Relay Module
3500/22-01-01-00 138607-01 Transient Data Interface BENTLY
3500/50 133442-01 BENTLY vibration monitoring system
146031-01 Transient Data Interface BENTLY
3500/22M 138607-01 Temperature monitor BENTLY
3500/93 135785-01 Transient Data Interface BENTLY
3500/65-01-00 Temperature monitor BENTLY
3500/05-01-02-00-00-00 Transient Data Interface BENTLY
3500/15 127610-01 BENTLY vibration monitoring system
3500/42M BENTLY4 Channel Relay Module
136188-02 BENTLY overspeed protection module
79492-01 Temperature monitor BENTLY
3500/42-01-00 BENTLY4 Channel Relay Module
3500/15 106M1079-01 BENTLY vibration monitoring system
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