코퍼워 3 중국 공장에서 전력 품질 개선을 위한 100kvar SVG 애플리케이션 설정

CoEpower SVG Project Case for a Factory in China

코이파워에서, we often support industrial customers whose electrical systems are already in operation and need more stable, 효율적인, and reliable reactive power compensation under real production conditions.

This project in China is a practical example of how SVG technology can be applied in a factory environment to improve power quality and support more stable system operation.

이 경우, the customer installed three sets of CoEpower SVG 100kvar units to strengthen reactive power compensation performance and better match the actual load behavior of the factory’s electrical system.

From an engineering perspective, this project reflects a very common and important application scenariohelping an industrial customer improve electrical system performance within a real operating environment, where installation space, 통풍, layout, and long-term reliability all matter.

프로젝트 개요

CoEpower 3-set 100kvar SVG solution

프로젝트 위치: 시안, Shaanxi Province, 중국

Customer Industry: 공장

Equipment Installed: CoEpower SVG 100kvar × 3 세트

Total Compensation Capacity: 300왼쪽

Application Purpose:

To improve reactive power compensation, optimize power factor performance, and support stable long-term operation of the factory’s electrical system

프로젝트 배경

The customer is a factory with an operating electrical distribution system that supports daily production loads. As is common in many industrial facilities, the electrical load behavior includes continuous variation depending on equipment startup, shutdown, and production demand.

In these operating conditions, reactive power demand can change frequently, creating challenges such as:

  • Insufficient reactive power compensation
  • Unstable power factor performance
  • Increased electrical losses
  • Additional stress on the power distribution system
  • Reduced overall power quality

To improve compensation performance and support more stable system behavior, the customer selected CoEpower’s SVG solution as part of its power quality management strategy.

During the site evaluation, it was also clear that the actual installation environment needed to be considered carefully. The project was not just about choosing the right compensation capacity — it was also about making sure the equipment could be integrated properly into the customer’s existing electrical room conditions.

Engineering Challenge

From a CoEpower engineering perspective, one of the key challenges in this type of factory application is that the electrical system must continue to operate reliably while handling dynamic load changes.

게다가, the installation environment itself often creates practical constraints, 포함:

  • Limited available installation space
  • Existing switchgear and cable routing are already in place
  • Need for proper ventilation and heat dissipation
  • Requirement for future inspection and maintenance access
  • Need to maintain stable operation over long-term industrial use

These are real engineering conditions that affect how compensation equipment performs after installation.

In industrial projects, SVG selection is not only about kvar rating.

It is also about whether the system can be arranged, connected, cooled, and maintained properly within the customer’s actual working environment.

That is why this project required both the correct SVG capacity and a practical engineering implementation approach.

CoEpower Solution

To meet the customer’s compensation requirements, CoEpower supplied and supported the application of:

Installed SVG Configuration

CoEpower SVG 100kvar × 3 세트

This provided a total reactive power compensation capacity of 300kvar, helping the customer better manage fluctuating reactive power demand during factory operation.

Why SVG Was Selected

Compared with conventional compensation methods, SVG offers several important technical advantages:

  • Fast dynamic reactive power compensation
  • Real-time power factor correction
  • Better adaptability to changing load conditions
  • Improved voltage support
  • More precise compensation control
  • Higher suitability for industrial electrical systems with fluctuating demand

For factory applications, these features are especially valuable because many industrial loads are not constant throughout the day. Equipment such as motors, 슬리퍼, 압축기, and production machinery can create changing reactive power requirements that need fast and continuous response.

By using SVG technology, the customer gains a compensation system that is better aligned with real production conditions.

On-Site Engineering Considerations

One of the most important parts of this project was ensuring that the SVG units were applied in a way that matched the physical and operational conditions of the site.

During the engineering review, we paid close attention to several practical factors:

  • Equipment placement within the room
  • Clearance around the SVG units
  • Cable routing and connection paths
  • Ventilation and surrounding airflow
  • Accessibility for inspection and maintenance

These details are often overlooked in purely specification-based discussions, but they are critical in real applications.

A well-performing SVG system depends not only on electrical design, but also on how effectively it is installed and supported in the customer’s actual environment.

코이파워에서, this is a key part of how we approach project execution — making sure the solution works not only on paper, but also on site and over time.

Application Value for the Customer

By implementing three sets of CoEpower SVG 100kvar units, the customer benefits from a more responsive and better-controlled compensation system that is suited to industrial operating conditions.

Expected Project Benefits

  • Improved reactive power compensation capability
  • Better power factor performance
  • More stable system operation under changing load conditions
  • Reduced reactive burden on the electrical distribution system
  • Improved voltage support
  • Better overall power quality management
  • Greater long-term operational reliability

These improvements help the customer operate the factory’s electrical system more efficiently and with greater stability, which is especially important in production-oriented environments.

결론적으로, this project case in China demonstrates how CoEpower’s SVG solution can be effectively applied in a factory environment to improve reactive power compensation and support better power quality performance.

By installing:

Project Configuration

CoEpower SVG 100kvar × 3 세트

the customer gained a total of 300kvar compensation capacity, providing a more suitable solution for managing dynamic industrial load conditions.

From the engineering side, the value of this project lies not only in the SVG equipment itself, but also in how the system was applied with attention to real site conditions, equipment layout, 통풍, and long-term usability.

코이파워에서, we believe that successful power quality projects are built not only on technical specifications, but on practical engineering execution that supports reliable operation in the customer’s actual working environment.

FAQ

What equipment was used in this project?

This project used 3 sets of CoEpower SVG 100kvar units, providing a total compensation capacity of 300kvar.

Where was this SVG project located?

The project was completed in China for a factory customer.

Why is SVG suitable for factory applications?

SVG is suitable for factory applications because it provides fast dynamic reactive power compensation, better power factor correction, and improved adaptability to changing industrial loads.

What are the benefits of SVG in industrial power systems?

SVG helps improve power factor, reduce reactive power burden, support voltage stability, and enhance overall power quality in industrial electrical systems.

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