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China Suppliers Factory Static Var Generator (SVG) for Low-Voltage Reactive Power Compensation (400V-690V)
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China Suppliers Factory Static Var Generator (SVG) for Low-Voltage Reactive Power Compensation (400V-690V)

Discover the advanced SVG low-voltage static reactive power generator, a cutting-edge solution for dynamic reactive power compensation. Manufactured in China, this Static Var Generator (SVG) effectively analyzes the reactive power component of the load current utilizing an external current transformer (CT) and sophisticated internal DSP calculations. By controlling a PWM signal generator, it sends precise control signals to the internal IGBT, generating the necessary reactive power compensation current for the inverter. As a leading factory and supplier in the industry, we ensure that our SVG technology meets the highest standards of performance and efficiency. Enhance your power management systems with our reliable SVG solutions today!

    1. Product Overview

    Static Var Generator (SVG) is widely used in high-voltage AC/DC transmission and transformation systems, as well as industrial and transportation distribution networks such as metallurgy and electrified railways. Its main function is to improve the operating conditions of the power supply and distribution network, enhance the reliability of the transmission and distribution system, suppress system voltage fluctuations, reduce pollution caused by harmonic currents on the power grid, and improve the power factor of the system.

    The existence of reactive power poses various problems and challenges to power transmission and distribution systems and heavy industry applications. Power transmission and distribution face problems such as voltage fluctuations, low power factor, and voltage instability; Heavy industrial applications, especially fast and impulsive loads, may lead to power quality issues such as voltage imbalance, voltage fluctuations, and flicker in the power supply network. Dynamic reactive power compensation can solve these problems.

    2. Working Principle

    Static Var Generator Working Principle

    The basic principle of SVG is to connect a Voltage Source Converter (VSC) in parallel with a reactor or transformer on the power grid. By adjusting the amplitude and phase of the output voltage on the AC side of the inverter, or directly controlling the amplitude and phase of the AC side current, the required reactive power can be quickly absorbed or emitted, achieving the goal of quickly and dynamically adjusting reactive power. When using direct current control, directly controlling the AC side current can not only track and compensate for the impulse current of the load, but also track and compensate for the harmonic current.

    Consider the system as a voltage source, SVG as a controllable voltage source, and transformer as an equivalent connected reactor. Composed of LCD touch screen, control unit, VSC inverter, DC power supply, connecting reactor, circuit breaker and other auxiliary devices.

    3. Functional Characteristics of the Device

    As a dynamic Snoan technology, KH-LSVG has the following technical characteristics:

    Real-time tracking and dynamic compensation
    Multi-functional (Addresses multiple power quality issues)
    Power unit modular design
    DSP intelligent control
    Small size and light weight
    Comprehensive protection and diagnosis

    The existence of reactive power poses various problems and challenges to power transmission and distribution systems and heavy industry applications. Power transmission and distribution face problems such as voltage fluctuations, low power factor, and voltage instability; Heavy industrial applications, especially fast and impulsive loads, may lead to power quality issues such as voltage imbalance, voltage fluctuations, and flicker in the power supply network. Dynamic reactive power compensation can solve these problems.

    Application Areas
    • Office buildings, commercial buildings
    • Schools and hospitals
    • Mobile communication
    • Residential buildings
    • Calculation information centers
    Suitable Industrial Loads
    • Automotive manufacturing
    • Rail transit
    • Intermediate frequency furnace and electric arc furnace
    • Chemistry and pharmaceuticals
    • Power electronics
    • Paper making and printing, etc.

    Frequently Asked Questions (FAQ)

    What is the primary function of a Static Var Generator (SVG)?
    The primary function of an SVG is to improve the operating conditions of the power supply and distribution network, enhance system reliability, suppress voltage fluctuations, reduce grid pollution caused by harmonic currents, and improve the system's power factor.
    How does the SVG working principle adjust reactive power?
    SVG connects a Voltage Source Converter (VSC) in parallel with a reactor or transformer on the grid. By adjusting the amplitude and phase of the output voltage on the AC side, or directly controlling the AC side current, it quickly absorbs or emits reactive power to achieve dynamic adjustment.
    What components make up the SVG system?
    The SVG system is composed of an LCD touch screen, a control unit, a VSC inverter, a DC power supply, a connecting reactor, a circuit breaker, and other necessary auxiliary devices.
    What are the key technical characteristics of the KH-LSVG?
    Key characteristics include real-time tracking and dynamic compensation, multi-functional capability, a modular power unit design, DSP intelligent control, small size, light weight, and comprehensive protection and diagnosis.
    What types of industrial loads and areas is SVG suitable for?
    It is suitable for commercial and office buildings, hospitals, schools, mobile communications, data centers, and heavy industrial loads such as automotive manufacturing, rail transit, electric arc furnaces, chemical/pharmaceutical plants, power electronics, and printing.

    HEADING-TYPE-1

    High voltage parallel capacitors are suitable for parallel connection in AC power systems with power frequency (50Hz or 60Hz) of 1kV and above. They are used to compensate for inductive reactive power, improve power factor, improve voltage quality, reduce line losses, and fully utilize the efficiency of power generation and supply equipment.

    description2

    HEADING-TYPE-1

    High voltage parallel capacitors are suitable for parallel connection in AC power systems with power frequency (50Hz or 60Hz) of 1kV and above. They are used to compensate for inductive reactive power, improve power factor, improve voltage quality, reduce line losses, and fully utilize the efficiency of power generation and supply equipment.

    description2