30-500Kvar SVG estático Var Gerador PFC Series para correção de fatores de potência

220V/400V/480V/690V
Freqüeny: 50/60Hz
Fase única/tripla
Conexão:3P4w/3p3w
Garantia:Padrão 1 ano/negociável
CE aprovado

1. 30- 500esquerda SVG Static Var Generator PFC Series for Power Factor Correction Visão geral

SVG estático var gerador is a product aimed at Power Factor Correction and Harmonic Filtering, along with a Three-phase balancing Function. Beneficiando -se da tecnologia de inversor, the SVG Static Var Generator PFC series’ compensation is stepless, o que significa que a saída SVG deve corresponder à potência reativa do sistema, sem compensação excessiva ou compensação. Para um único módulo, SVG capacity ranges from 30kVA to 100kVA. For the Abinet system, it’s an unlimited parallel design. Quando a carga está gerando corrente indutiva ou capacitiva, it makes the load current lag or lead the voltage. SVG detects the phase angle difference and generates a leading or lagging current into the grid, tornando o ângulo de fase de corrente quase o mesmo que o de tensão no lado do transformador, o que significa que o fator de poder fundamental é unidade.

 

30- 500kvar SVG Static Var Generator SVG Static Var Generator PFC Series

2. Parâmetros do produto

Capacidade do gabinete 30-500Gabinete Kvar
Tensão nominal(V) 220V/400V/480V/690V
Frequência nominal (Hz) 50Hz/60Hz
Configuração de rede 1P2W/3P4W/3P3W
Razão de TC 100:5~ 6000:5
Design de topologia 3 Nível
Correção do fator de potência PF = 0,99
Tempo de resposta total ≤10ms
Frequência IGBT 20KHZ
Interface de comunicação RS485, Ethernet
Protocolo de comunicação Protocolo Modbus
Classe de proteção IP 20
Certificado TUV CE/AS/URL
Nível de ruído <60dB

 

3. Product Feature

  • Fator de potência ≥0,99
  • 20MS TEMPO DE RESPOSTA
  • Correção do fator de potência baseada em inversor
  • Topologia de três níveis& Algoritmo FFT
  • Facilidade de comissionamento com monitoramento e relatórios modernos da qualidade da energia

 

4. SVG Advantages

  • Compensar o poder reativo (principal & atrasado)
  • Fator de alta potência de compensação precisa
  • Sem ressonância
  • Resposta rápida

5. How does the CoEpower Static Var Generator Work?

In modern electrical systems, many types of industrial equipment, such as motors, inverters, and welding machines, draw inductive or capacitive current. This causes the current to lag behind or lead ahead of the voltage, resulting in a non-unity power factor and poor power quality.

The CoEpower Static Var Generator is designed to solve this issue dynamically and precisely.

(1). Real-Time Detection

The CoEpower SVG continuously monitors the electrical load in real time by detecting the phase angle difference between the current and voltage. This phase angle difference indicates whether the system is experiencing:

-Inductive load (current lags voltage)

-Capacitive load (current leads voltage)

(2). Instantaneous Compensation

Once the CoEpower SVG detects a phase mismatch, it uses its built-in fast-switching power electronic components (Por exemplo, IGBTs) to generate a compensating current:

-If the load is inductive, it generates a leading (capacitive) current.

-If the load is capacitive, it generates a lagging (inductive) current.

This compensating current is injected into the grid or system at the point of common coupling.

(3). Achieving Unity Power Factor

The goal of the CoEpower SVG is to make the current waveform align closely with the voltage waveform at the transformer or system input. When the current and voltage are in phase, the fundamental power factor is corrected to nearly 1.0, which means:

-Maximum efficiency in power delivery

-Minimal reactive power flow

-Reduced energy loss and equipment stress

(4). Intelligent & Adaptive Operation

Unlike traditional capacitor banks that switch in fixed steps, the CoEpower SVG provides smooth, stepless compensation with millisecond response times. It dynamically adapts to:

-Rapid load changes

-Fluctuating power factor

-Complex harmonic-rich environments

The CoEpower Static Var Generator works by detecting and correcting phase angle imbalances between current and voltage in real time. By injecting an exact amount of reactive power—either leading or lagging—it ensures that your system operates with high efficiency, minimal losses, and maximum power quality.

 

6. Efeito de compensação

O sistema de controle DSP IGBT faz a compensação de energia reativa da compensação mecânica evoluir para a compensação de estabilidade eletrônica de energia inteligente. Quaisquer que sejam a corrente de carga muda, O SVG sempre pode gerar a corrente de compensação correspondente para realizar a combinação perfeita. Sempre mantenha o fator de potência como 0.99. Funcionando bem em um ambiente severo, como THDU alto/alta temperatura ambiente/alta amplitude.

 

7. How to Install a Static Var Generator?

Note: Always consult the manufacturer’s manual and hire a licensed electrician or engineer for actual installation.

(1) Site Assessment & Load Analysis

Measure your system’s power factor, load profile, and reactive power demand using a power quality analyzer.

Identify where the SVG should be placed (main distribution panel, sub-panel, or near heavy loads).

Choose a properly sized SVG unit based on reactive power (esquerda) requirements.

(2) Unpacking & Inspection

Carefully unpack the SVG and check for physical damage during transport.

Verify that the voltage rating, current rating, and frequency match your system.

(3)Physical Installation

Mount the SVG in a clean, dry, and well-ventilated location (avoid high temperatures or dusty areas).

Ensure enough space for heat dissipation and future maintenance.

Secure the SVG using floor or wall mounts (depending on the model).

(4) Electrical Connections

Power Connection: Connect the SVG input terminals to the busbar or main distribution line using appropriately rated cables.

CT Connection (Current Transformers):

-Connect the CTs to measure load current.

-Install CTs in the correct phase sequence and direction.

-Typically placed on the incoming lines before the load.

Control Wiring: Connect the CT signals and control communication (RS485, Modbus, etc.) to the SVG controller.

(5) Commissioning & Configuration

Power on the SVG.

Configure the following settings using the built-in display or external software:

-System voltage and current ratings

-CT ratio

-Target power factor

-Communication parameters

Perform a function test to ensure the SVG is injecting/absorbing reactive power properly.

(6) Final Checks and Monitoring

Monitor the SVG’s performance for a few hours or days to ensure:

-Power factor is improving (near 1.0)

-No abnormal alarms or overheating

-Voltage and current are within safe limits

Set up remote monitoring, if available.

(7) Safety Reminders

Always disconnect power before making any electrical connections.

Use PPE (personal protective equipment) and follow lockout-tagout (LOTO) procedures.

Only qualified personnel should perform the installation.

 

8. Linha de produção de coepower

Linha de produção de coepower

9. Vídeos

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