Power Engineering 
K-JIANG
NameDescriptionContent
Current Location:

How do various types of motors automatically regulate power and circuits?

From:China Transmission Network | author:Mr.Chen | Time :2024-11-27 | 1357 view: | 🔊 Click to read aloud ❚❚ | Share:

Servo motors work by monitoring and adjusting the motor's operating status through an internal feedback system, enabling the motor to operate at a predetermined position and speed. In a servo motor, an encoder is usually used as a feedback sensor to control and adjust the motor by detecting the position and speed signals of the motor rotor.

The main structure of a servo motor includes: motor body, encoder, and controller. The motor body is the component responsible for generating power, which can be used as DC motor, AC motor, stepping motor, etc. The encoder is a sensor used to detect the position, speed, angle and other information of the motor rotor, and there are two common types of encoders: absolute encoder and incremental encoder. The controller is used to receive the feedback signal from the encoder, and then calculate the control algorithm and output the control signal to control and adjust the motor.

There are many kinds of control algorithms for servo motors, among which the more common ones are PID control algorithm, fuzzy control algorithm, adaptive control algorithm, etc. PID control algorithm refers to the proportional-integral-derivative control algorithm, and its basic idea is to obtain the control signal through proportional, integral, and differential processing of the error. Fuzzy control algorithm is a kind of nonlinear control algorithm, which adopts fuzzy mathematics to describe the system, and arrives at the processing result through reasoning and judgement. Adaptive control algorithm is an autonomous learning control algorithm, which can continuously self-adjust and optimise over time to improve the control accuracy of the motor.

Servo motors can achieve a variety of control modes in the process of application, including position control mode, speed control mode, torque control mode and so on. Position control mode is to control the motor to reach the target position by controlling the motor output angle (or position) signal. Speed control mode is to control the motor to reach the target speed by controlling the speed signal output from the motor. Torque control mode means to control the motor to reach the target torque by controlling the torque signal output from the motor.

In the application of servo motors, the closed-loop control mode is usually used for control. Closed-loop control refers to the control of the system through the use of feedback signals to improve control accuracy. Relative to closed-loop control is open-loop control, open-loop control is only based on input signals to control the output, there is no feedback link, and it is easy to be affected by external interference and lead to large control errors.

In summary, the working principle of the servo motor is to monitor and adjust the operating state of the motor through the internal feedback system, so as to achieve accurate control. Servo motors are widely used, with a variety of control algorithms and control modes, and the closed-loop control method is more stable and reliable. With the development of automation technology, servo motor technology will have more application scenarios and development space.

First, the application of motor power regulation

Motor power regulation is mainly used in the need to adjust the motor speed according to the size of the workload, such as production lines, industrial machinery, ships and so on. In some places where energy saving and consumption reduction is required, the energy consumption structure can also be optimised by adjusting the motor power.

Second, the motor power adjustment method

1. Artificial regulation

Artificial regulation that is, through human operation to adjust the power of the motor. There are mainly the following two adjustment methods:

(1) manual knob adjustment: turn the manual knob to the corresponding position to change the output power and speed of the motor.

(2) Manual remote control adjustment: Adjust the output power and speed of the motor by manual remote control to achieve wireless remote control.

2. Automatic adjustment mode

The automatic adjustment method is to realise the power adjustment of the motor through the computer, PLC controller and other automatic devices. There are mainly the following two regulation methods:

  • Autronica Repeater panel BU-BV-420G2
  • Autronica Maritime gas alarm control panel kit BS-420MG
  • Autronica SD CARD REPLACEMENT IN BC-440, BC-420, BS-420, BS-430 AND BU-BV-420
  • Autronica Operator panel BS-430G2
  • Autronica Controller rack unit BC-440G2
  • Autronica Controller BC-420G2
  • Autronica Fire and gas alarm control panel BS-420G
  • Autronica AutroSafe 4 integrated fire and gas (IFG) panels
  • Autronica POWER CABINET BP-405
  • Autronica Fire brigade loop panel BU-110
  • Autronica Information loop panel BV-110
  • Autronica Repeater Panel BU-BV-420
  • Autronica Operator Panel BS-430
  • Autronica Controller rack unit BC-440
  • Autronica Controller BC-420
  • Autronica MARITIME STD. SOLUTIONS BS-420M (CABINETS AND MOUNTING PLATES)
  • Autronica FIRE ALARM CONTROL PANEL BS-420
  • Autronica Mimic cabinet BUR-200, for maritime installations
  • Autronica MIMIC DRIVER BUR-200
  • Autronica INFORMATION PANEL BV-210
  • Autronica FIRE BRIGADE PANEL BU-210
  • Autronica BS-211 REPEATER PANEL
  • Autronica BS-200M FIRE ALARM CONTROL PANEL
  • Autronica FIRE ALARM CONTROL PANEL - BS-200
  • CTI 2556 16-Channel Isolated Thermocouple Input Module
  • CTI 2557-A 16-Channel RTD Input Module
  • CTI 2500S-27-1750 Slice I/O, Ethernet, RS232/485, 900MHz, 2DIO / 4UAI / 2AI (MATURE)
  • CTI 2500S-26-1750 Slice I/O, Ethernet, RS232/485, 900MHz, 8DIO / 2UAI (MATURE)
  • CTI 2500S-23-1750 Slice I/O, Ethernet, RS232/485, 900MHz, 4DI / 4DO / 2UAI / 2AO (MATURE)
  • Beckhoff ELM3504-0030 | EtherCAT Terminal, 4-channel analog input, measuring bridge
  • Beckhoff ELM3504-0000 | EtherCAT Terminal, 4-channel analog input, measuring bridge
  • Beckhoff ELM3502-0030 | EtherCAT Terminal, 2-channel analog input, measuring bridge
  • Beckhoff ELM3502-0000 | EtherCAT Terminal, 2-channel analog input, measuring bridge
  • Beckhoff ELM3348-0033 | EtherCAT Terminal, 8-channel analog input, temperature
  • Beckhoff ELM3348-0030 | EtherCAT Terminal, 8-channel analog input, temperature
  • Beckhoff ELM3348-0003 | EtherCAT Terminal, 8-channel analog input, temperature, thermocouple
  • LENZE Cabinet PC series Industrial PCs
  • LENZE Embedded Line series Industrial PCs
  • LENZE Command Station series Industrial PCs
  • LENZE 3200 C Controller
  • HIMA H6200A DIN rail Safety Analog Isolation Module Transmitter Circuit
  • Eaton CORPORATION IQMESIIN1 METER
  • Eaton DT223UGK Heavy duty double-throw non-fused safety switch
  • Eaton 5884-1400 6-Digit Dual Preset Control W/ Batch Control
  • Eaton 1023843 Power Circuit Board 94V
  • EATON ES4P-221-DRXD1 24VDC NSMP
  • Eaton DH222NWK heavy duty fusible safety switch
  • Eaton Touch Panel 10.1 inch XV-303-10-C00-A00-1C
  • Eaton RDF200J-3 Bussmann series RDF fused rotary disconnect switch
  • EATON CORPORATION A200M2CACD A200 NEMA Motor Control
  • Eaton SPD160208Y3J Surge Protection Device
  • EATON CORPORATION SPD160208Y3K SURGE SUPPRESSOR
  • EATON DILM400/22 (RA250) 200KW Coil Voltage/Coil 110-250V 40-60Hz/DC
  • Eaton XV-430-10TVB-1-10 139902 Touch Panel
  • EATON CORPORATION D820MPM HMI
  • EATON PXG900 Power Xpert Insight Gateway 900
  • Eaton Durant 5882-7 Digital Counter loc2D3
  • EATON AXCELIS 1220-0012-0002 DISK VACUUM DI CONTROLLER
  • Eaton 1383B-6501 80 Series Photoelectric Sensor Head
  • Eaton FDC2100L Series C molded case switch
  • Eaton XV-430-10TVB-1-10 139902 Touch Panel
  • Eaton FD3200L circuit breaker
  • Eaton Touch Screen Control Panel X-152-D6-10TVRC-10
  • EATON VICKERS EEA-PAM-523-A-32 02-326001 POWER AMPLIFIER
  • Saacke Seavis HMI 03 EATON XV-102-B6-35TQR-1AL-PLC HMI Touch Panel
  • EATON MTL E05016 DIGITAL INPUT EUROCARD E05516-2134
  • Eaton HFD3150 3P 150A 600VAC Circuit Breaker
  • Eaton HMIVU06CUNB1 HMi Operator Interface, RS-232, 5.6"
  • Cutler-Hammer/ Eaton Panelmate PowerPro 5785 with cables LCD monitor
  • Eaton D100CA40 40 I/O Micro PLC 115VAC Input Triac Output
  • EATON CUTLER HAMMER 66D2032GX1 MP-3000 PROTECTION RELAY
  • EATON R9L3200FJ Rotary Disconnect Switch
  • EATON CORPORATION E51CLT16PCU Switch
  • Aerotech Modular System Control Console
  • Aerotech TV Series Transformers
  • Aerotech TM5 Transformer Module (500 watts)
  • Aerotech TM3 Transformer Module
  • Aerotech UFM Noise Filter Module
  • Aerotech MFM10-2 Motor filter module
  • Aerotech MFM10-1 Motor filter module
  • Aerotech MPG Handwheel Pendant
  • Beckhoff ELM3348-0000 | EtherCAT Terminal, 8-channel analog input, temperature
  • Beckhoff ELM3344-0033 | EtherCAT Terminal, 4-channel analog input, temperature
  • Beckhoff ELM3344-0030 | EtherCAT Terminal, 4-channel analog input, temperature
  • Beckhoff ELM3344-0003 | EtherCAT Terminal, 4-channel analog input, temperature
  • Beckhoff ELM3344-0000 | EtherCAT Terminal, 4-channel analog input, temperature
  • Beckhoff ELM3246-0000 | EtherCAT Terminal, 6-channel analog input, temperature
  • Beckhoff ELM3244-0000 | EtherCAT Terminal, 4-channel analog input, temperature
  • Beckhoff ELM3148-0000 | EtherCAT Terminal, 8-channel analog input, multi-function
  • Beckhoff ELM3146-0000 | EtherCAT Terminal, 6-channel analog input, multi-function
  • Beckhoff ELM3144-0000 | EtherCAT Terminal, 4-channel analog input, multi-function
  • Beckwith Electric M-5072 Retrofit Kit For M-4272 Digital Motor Bus Transfer System
  • Beckwith Electric M-3919A Graphic Display Unit/ Human Machine Interface
  • Beckwith Electric M-4172 Digital Motor Bus Transfer System
  • Beckwith Electric M-3904B Remote Monitoring Module
  • Beckwith Electric M-3410A Intertie/Generator Protection Relay
  • Beckwith Electric B-1612 Adapter
  • Beckwith Electric B-1652 Adapter
  • Beckwith Electric B-1685 Adapter
  • Beckwith Electric M-2035 Analog to Digital Interface Module
  • Beckwith Electric B-2291 Digital Input Guard
  • Beckwith Electric M-2406 Recloser Control Adapter Chassis
  • Beckwith Electric M-3908 Universal Contact Input Adapter
  • Beckwith Electric M-3801D IPS Plot Software
  • Beckwith Electric M-7651A D-PAC
  • Beckwith Electric M-2979 Recloser Control Cabinet
  • Beckwith Electric M-0359 SYNCROCLOSER MOD512
  • Beckwith Electric M-2001C-6ELFA Tap Changer Controller Voltage Regulator Control
  • Beckwith Electric M-0124 TERMINAL BOARD ADAPTER PLATE 13 POS
  • Beckwith Pride M-0296C 3ph Programmable Relay
  • Beckwith Electric M-0388 Syncrocloser Check Relay
  • M-0170A AC Current Relay Beckwith Electric
  • Beckwith Electric Intertie Protection M-3520 Instruction Manual
  • M-3311 M-3311 7113 BECKWITH ELECTRIC TRANSFORMER PROTECTION RELAY
  • Pride M-0296b 3 phase Programmable Relay Beckwith Electric Co
  • Beckwith Electric M3310 Integrated Transformer Protection Panel
  • Beckwith M-0145 First Customer Protector
  • Beckwith Electric M-0296C 3 phase Programmabel Relay
  • Beckwith Electric M-0389 VOLTAGE VERIFIER
  • M-3425 M-3425-A1DE BECKWITH ELECTRIC GENERATOR PROTECTION RELAY SL
  • Beckwith Electric M-0420 Multifunction Relay Protection Module 48VDC
  • M-3430 M-3430M0D515 BECKWITH ELECTRIC GENERATOR PROTECTION RELAY
  • Beckwith Electric Tapchanger Control M-0067E
  • Beckwith M-2001D-6L4S20C0S0X Tap Changer Control Surplus
  • BECKWITH ELECTRIC M3425A-STD1 Generator Protection 85-280VDC
  • Beckwith Electric High Speed Sync-Check Relay #M-0245C Mod #22 (NIB)
  • Beckwith Electric M-7679 R-PAC
  • Beckwith Electric TAPCHANGER CONTROL M-2001C-6SL