Description
hardware flow control. It is an ideal choice in the field of industrial automation.
2. Principle of frequency converter
In embedded development, the control of motors is often involved. Currently, frequency conversion control of AC motors is widely used, so let”s briefly introduce the
frequency converter by looking at the diagram, assuming that you already understand the principle of the motor.
The block diagram is as follows:
The frequency converter is mainly composed of rectifier (AC to DC), filtering, inverter (DC to AC), braking unit, drive unit, detection unit, microprocessing unit, etc.
The inverter relies on the switching of the internal IGBT to adjust the voltage and frequency of the output power supply, and provides the required power supply voltage
according to the actual needs of the motor, thereby achieving the purpose of energy saving and speed regulation. In addition, the inverter also has many protection functions.
, such as overcurrent, overvoltage, overload protection, etc. With the continuous improvement of industrial automation, frequency converters have also been widely used.
A typical inverter system diagram is shown below. It mainly includes operation panel, VFD controller, motor and other parts.
1. Typical structure:
Mainly includes: control platform, measurement circuit, power circuit, protection circuit, etc.
There are two common types of frequency converters: voltage type and current type. Among them, the power inverter part mostly uses power
tubes such as IGBT and IGCT.
2. Typical algorithm:
Among them, the control algorithm represented by Siemens is mainly based on coordinate transformation (vector control). Friends who are
interested in the algorithm represented by ABB can search for information by themselves (direct torque control) and will not go into details here.
3. Vector control:
Many chip MCU and MPU manufacturers have provided block diagrams and algorithm libraries for variable frequency vector control. Those
who are interested can study it. For example, the following figure is a block diagram provided by Microchip
https://www.xmamazon.com
https://www.xmamazon.com
https://www.plcdcs.com/
www.module-plc.com/
https://www.ymgk.com
ABB CP450T-ETH 1SBP260189R1001
ABB 1SBP260188R1001
ABB CP450T
ABB CP450T 1SBP260188R1001
ABB 1SBP260187R1001
ABB CP440C-ETH
ABB CP440C-ETH 1SBP260187R1001
ABB 1SBP260197R1001
ABB CP435-T-ETH
ABB CP435-T-ETH 1SBP260197R1001
ABB 1SBP260197R1001
ABB CP435-ETH
ABB CP435-ETH 1SBP260197R1001
ABB 1SBP260195R1001
ABB CP430T
ABB CP430T 1SBP260195R1001
ABB CP430C
ABB CP430BP-ETH
ABB 1SBP260196R1001
ABB CP430B-ETH
ABB CP430B-ETH 1SBP260196R1001
ABB 1SBP260183R1001
ABB CP430-B
ABB CP430-B 1SBP260183R1001
ABB 1SBP260182R1001
ABB CP420-B
ABB CP420-B 1SBP260182R1001
ABB 1SBP260182R1001
ABB CP420B
ABB CP420B 1SBP260182R1001
ABB 1SBP260191R1001
ABB CP415M
ABB CP415M 1SBP260191R1001
ABB 1SBP260181R1001
ABB CP410M
ABB CP410M 1SBP260181R1001
ABB 1SBS260284R1001
ABB CP400
ABB CP400 1SBS260284R1001
ABB HIEE410730P201 AEND.:A
ABB HIEE305098R0001
ABB HIEE305098R0001 HIEE410730P201 AEND.:A
ABB UNS0007A-P V1 HIEE410730P201 AEND.:A
ABB UNS0007A-P V1 HIEE305098R0001
UNS0007A-P V1 HIEE305098R0001 HIEE410730P201 AEND.:A
ABB UNS0007A-P V1
ABB 3BHE029153R0101
ABB 3BHE029154P3 REV.G
ABB 3BHE029154P3 REV.G 3BHE029153R0101
Reviews
There are no reviews yet.