Power Quality Optimization Solution for Airport Power Supply and Distribution

Problem
       The improvement of the service level and capacity of civil aviation airports depends on the efficient and effective operation of various supporting facilities in the airport, the rapid development and application of power electronics, and various mechanized, automatic and information-based services for civil aviation support, such as lighting, air conditioning, escalators and elevators, luggage, MRT, boarding bridges and bridge-mounted air conditioners, aircraft maintenance electricity; ATC building, control center, radar station, refrigeration station, etc. Due to their own characteristics, these electrical equipment will cause power quality problems in the working process. The operation of a large number of nonlinear loads will increase the harmonic content of the distribution system, causing potential safety hazards to the distribution system. At the same time, it will cause failures of some sensitive equipment and a series of safety issues.

Solution
  In order to solve the current harmonic problem of power quality, our company proposes the following solutions:

       An active power filter (hereinafter referred to as APF) is used to optimize the power quality of the distribution system. The APF of Xi'an Actionpower Electric can effectively solve the above-mentioned power quality problems and ensure the visualization of the power quality of the airport power supply system, thus providing a green power supply and distribution environment for the airport power distribution system, improving the power consumption quality, using electricity in an environmentally friendly and efficient manner.

 

Brings Value

◆ Reduce the harm of harmonic waves to cables, transformers and electrical equipment, protect the safety and cleanliness of the system, and ensure that other equipment can work normally without interference.

◆ Reduce the loss of lines (including cables, transformers and electrical equipment) caused by harmonic wave.