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10 principles for selecting energy-saving frequency inverters

2026-04-06 07:38:44 · · #1

Since its development, frequency converter technology has achieved significant energy-saving effects in many production processes. The National Twelfth Five-Year Plan for Energy Conservation and Emission Reduction requires the implementation of energy-saving renovation projects, with motor system energy conservation being one of the main projects. This plan mandates energy-saving renovations to motor systems, including variable frequency speed control, permanent magnet speed control, and reactive power compensation, to optimize system operation and control and improve overall system efficiency. The plan proposes that by 2015, the operating efficiency of motor systems should be 2-3 percentage points higher than in 2010, achieving an energy-saving capacity of 80 billion kilowatt-hours during the Twelfth Five-Year Plan period.

Therefore, since the 12th Five-Year Plan, energy conservation and environmental protection have been the core of my country's industrial economic development. While pointing the way for the sustainable development of my country's industry, they have also effectively driven the sustainable development of my country's frequency converter industry, enabling the industry to continuously expand its market share and become an important cornerstone of my country's industrial economic development with its strong development momentum.

Variable frequency drive (VFD) energy saving is mainly used in situations where it is necessary to change the characteristics of the drive machinery by varying the speed of the AC motor to meet production process requirements. It is frequently used in fans and water pumps. When a motor can only operate at its rated speed, its drive machinery can only operate at a certain rated speed.

10 principles for selecting energy-saving frequency inverters

When selecting frequency converters for speed regulation or energy saving, the following 10 principles should be followed as a prerequisite for deciding on a solution. Local electricity prices are higher, resulting in greater economic benefits for the same amount of electricity saved; this is also a factor that must be considered.

1) There are certain conditions for frequency converters to save energy. Under the condition that the use is not affected, by appropriately changing the operating parameters, the power consumed by unreasonable operating parameters can be saved, and the operation can be transformed from normal operation to economical operation.

2) To save energy, the frequency must be reduced. The greater the reduction, the more electricity is saved. In principle, without reducing the frequency, the inverter cannot save electricity.

3) It is related to the motor load rate. When the load rate is between 10% and 90%, the energy saving rate is at most about 8% to 10%, and the energy saving rate is higher when the load rate is lower. However, the reactive power saving rate is about 40% to 50%, which is not included in the electricity bill.

4) It is related to the rationality of the original operating parameters. For example, it is related to the adjustable values ​​of pressure, flow rate, speed, etc. A larger adjustable value results in a higher energy saving rate, and vice versa.

5) This is related to the original adjustment method. Adjusting operating parameters using inlet or outlet valves is uneconomical. Switching to frequency converter speed control is much more economical and reasonable. Using frequency converter speed control can save 20%–30% more electricity than manually adjusting operating parameters using valves.

6) This is related to the original speed control method. For example, the original speed control using a slip-ring motor was inefficient, especially at medium and low speeds where the efficiency was below 50%, making it very uneconomical. Switching to frequency converter speed control saved this energy. Currently, slip-ring motors are still widely used in light industry, textiles, papermaking, printing and dyeing, plastics, and rubber industries. Therefore, using frequency converters to achieve energy saving and technological transformation is an urgent task.

7) It depends on the operating mode of the motor. For example, the energy savings are different for continuous operation, short-term operation, and intermittent operation.

8) It is related to the length of time the motor is running. For example, if it is run for 24 hours a day or 365 days a year, the energy saving will be greater, and vice versa.

9) It is related to the power of the motor itself. Under the same energy-saving rate, the larger the power, the greater the energy saving value and the greater the economic benefits, even if the energy saving rate is relatively lower than that of a smaller power motor, the actual benefits are greater.

10) Related to the importance of the production process equipment in this unit. First, select equipment with high power consumption, high product cost, and whose current speed regulation method is not economical and reasonable, and upgrade them. After replacing them with frequency converters, there will be immediate and twice the result with half the effort.

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