CoEpower Active Voltage Conditioner Overview

Voltage sag is a typical power quality problem that troublesindustrial enterprises. It may cause the malfunction of the deviceor tripping. For a voltage sag event, depth and duration are usedto describe it.

AVC is a solution designed by CoEpower for voltage sags and swells of up to 30% The AVC isconnected in series between the load and the power grid, and is responsible for stabilizing thevoltage downstream.

アクティブ電圧コンディショナー - 共同作家

The CoEpower AVC Active Voltage Conditioner is an inverter-based system that protects sensitive industrial and commercial loads from voltage disturbances. 高速で提供されます, 正確な電圧SAGおよびサージ補正, 連続電圧調節と負荷電圧補正と同様に.

Application Cases of CoEpower Active Voltage Conditioner

Hospital Power Distribution

Medical imaging equipment in hospitals requires a continuous and stable power supply to ensure accurate and reliable operation. CoEpower AVC effectively stabilizes input voltage, protecting sensitive equipment and preventing interruptions that could impact diagnosis and patient care.

CoePowerアクティブ電圧コンディショナーの設置ケース

Production Line Power Distribution

Production lines rely on uninterrupted operation to maintain efficiency and product quality. CoEpower AVC ensures stable voltage supply, preventing equipment shutdowns, malfunctions, or collisions caused by voltage fluctuations, thereby improving overall productivity and safety.

Key Advantages and Features of CoEpower Active Voltage Conditioner

  1. +30% Sag and Swell Continuous Compensation

The system provides continuous voltage regulation with a compensation range of up to ±30%, effectively mitigating voltage sags and swells in real time. This ensures a stable power supply for sensitive equipment such as PLCs, ドライブ, and precision instruments, reducing the risk of unexpected shutdowns, data loss, or equipment damage. It is especially valuable in environments with unstable grid conditions or frequent load fluctuations.

  1. Remote Monitoring and Controlling

Equipped with intelligent communication capabilities, the conditioner supports remote monitoring and control via SCADA systems or cloud-based platforms. Users can access real-time data, alarms, historical records, and system diagnostics from anywhere. This feature significantly improves operational visibility, enables faster troubleshooting, and reduces the need for on-site maintenance.

  1. Harmonic Compensation

The device actively detects and suppresses harmonic distortions generated by non-linear loads such as inverters, UPSシステム, and variable frequency drives (VFDS). By reducing total harmonic distortion (thd), it improves overall power quality, prevents overheating of equipment, and extends the lifespan of transformers, ケーブル, およびコンデンサ.

  1. Indoor and Outdoor Installation Flexibility

Designed with robust enclosure options, the system is suitable for both indoor and outdoor installations. Outdoor models are built to withstand harsh environmental conditions such as dust, 湿度, and temperature variations, ensuring reliable performance in industrial plants, substations, and remote locations.

  1. 反応性電力補償

The conditioner dynamically compensates reactive power, improving the overall power factor of the system. This reduces energy losses, enhances electrical efficiency, and helps users avoid utility penalties associated with low power factor. It also contributes to better voltage stability across the network.

  1. Current Unbalance Compensation

The system continuously monitors three-phase current conditions and automatically corrects unbalanced loads. By redistributing current evenly across phases, it minimizes neutral current, reduces equipment stress, and improves the overall reliability and efficiency of the power distribution system.

Compensation Voltage Schematic Diagram

How Does an AVC Active Voltage Conditioner Work - 共同作家

How Does an AVC Active Voltage Conditioner Work?

The working principle of an AVC Active Voltage Conditioner is based on real-time voltage compensation using advanced power electronics.

  1. Continuous Voltage Monitoring

The AVC continuously monitors the incoming supply voltage using high-speed sensors. It detects any deviation from the preset nominal voltage.

  1. Control System Analysis

A digital controller (typically DSP-based) analyzes the voltage deviation in milliseconds and determines the required correction.

  1. Series Injection Transformer

The AVC uses a series injection transformer to add or subtract voltage from the supply line. This allows it to compensate for voltage sags or swells.

  1. Power Electronics Converter

A high-speed inverter or converter generates the compensating voltage, which is then injected into the system.

  1. Real-Time Compensation

The system responds within milliseconds, ensuring that the output voltage remains stable and within acceptable limits.

CoEpower Active Voltage Conditioner Technical Data

CoEpower Active Voltage Conditioner Technical Data

Applications of AVC Active Voltage Conditioners

  1. Manufacturing Industry

Precision machinery such as CNC machines and robotic systems require stable voltage for accurate operation.

  1. データセンター

Servers and networking equipment are highly sensitive to voltage variations. AVC ensures uninterrupted performance.

  1. 医療施設

Medical equipment like MRI and CT scanners demand stable and reliable power.

  1. Semiconductor Industry

Voltage instability can cause defects in chip production, making AVC systems essential.

  1. 再生可能エネルギーシステム

Solar and wind power integration often introduces fluctuations, which AVC can effectively stabilize.

  1. 商業ビル

エレベーター, HVAC systems, and lighting systems benefit from improved power quality.

AVCとUPSの比較

AVC: 160〜6400 kVa 静的状態UPS
オンライン電圧規制 はい はい
スペアパーツ モジュラー設計とは、部品の汎用性が高いことを意味します より多くのスペアパーツを購入する必要があります
供給電圧を超えた電圧の適合性 380 480Vへ 200V〜35kVに適しています フルパワー入出力トランスが必要です.

追加のスペースを占有し、効率を低くします

パワーオフ保護 いいえ, しかし、停電は非常にまれです, したがって、多くのコストと複雑さを追加する必要はありません バッテリーはそうあるべきです

適切な機能を確認しました, 特に年齢を考慮してください.

エネルギー埋め戻し はい, AVCは、エネルギー補充荷重をサポートできます

 

負荷エネルギーの埋め戻しはUPSをトリップし、負荷をサポートできません
高調波波 AVCは純粋な正弦波を吸収し、電源システムを汚染しません 典型的なUPSは、6パルス整流器を使用して高調波が豊富な電流を描画します, 電源システムに問題を引き起こす可能性があります, トランスの過熱など
下流の障害クリア機能 優れたダウンストリーム断層 - クリア機能 下流の断層に対する耐性が低い
環境への影響 (緑色のレベル) に起因する非常にわずかな環境への影響

高効率, 長寿命, そして、メンテナンスはほとんどありません

 

効率が低く、鉛などの有毒物質による環境への影響が大きい, 酸, バッテリーのプラスチック. プラス, バッテリーの廃棄およびリサイクルの問題.

CoePowerの生産ライン

CoePowerの生産ライン

ビデオ

タグ: アクティブ電圧コンディショナー, アクティブ電圧コンディショナー価格, アクティブ電圧補正, AVCメーカー, AVC電源補正, AVC供給, voltage fluctuation solution, voltage stabilizer, industrial voltage protection, AVC system, AVC Active Voltage Conditioner suppliers, AVC Active Voltage Conditioner manufacturers, AVCアクティブ電圧コンディショナー, AVC power quality, voltage stabilizer industrial, voltage sag correction, AVC working principle, CoEpower AVC solution, Active Voltage Conditioner suppliers, Active Voltage Conditioner manufacturers, サプライヤー, メーカー, 工場, company, 中国, 卸売, 買う, 価格, 引用, バルク, 販売のため, 企業, ストック, 料金.

今すぐ見積もりを入手してください

Cookieの設定を更新します

簡単な見積もりを求めてください

内でご連絡いたします 1 営業日.