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MCR Type SVC by China Suppliers: Advanced Dynamic Reactive Compensation Solutions from Our Factory

Our SVC (Static Var Compensator) is designed to cater to various industries and applications, featuring three distinct types: MCR, TSC, and TCR. The MCR type SVC utilizes a self-coupled DC excitation system and operates in a limit magnetic saturation mode. This innovative design significantly minimizes harmonic generation, reduces active power loss, and ensures a rapid response time. By adjusting the thyristor triggering angle in the MCR excitation system, the saturation level of the magnetic flux in the magnetic control reactor can be modified, allowing for precise control of reactive power output.

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The MCR type SVC stands out for its exceptional reliability, requiring no maintenance and boasting a service life of over 20 years. It has been primarily adopted in critical systems such as electrified railway traction power supply networks, demonstrating its capability for stable and dependable operation in challenging power grid environments, including those with voltage waveform distortion and large amplitude fluctuations. Our MCR type SVC can operate seamlessly across a wide range of voltage levels (6-500kV), with easy installation akin to standard transformers and straightforward debugging. The reactive power compensation capacity is infinitely adjustable, ensuring optimal compensation effectiveness.

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As a leading manufacturer in China, we are proud to provide top-quality SVC solutions to global suppliers and industries, reinforcing our commitment to innovation and reliability in power systems.

    High-Voltage TSC Dynamic Reactive Power Compensation Device

    The high-voltage TSC dynamic reactive power compensation device consists of a control system, triggering system, thyristor monitoring system, pulse transformer, capacitor, reactor, protection unit, etc. The control system detects the reactive power of the power system in real time, automatically determines the capacitor branch that needs to be switched, and then controls the thyristor valve group of the corresponding branch to achieve the switching of the capacitor group. The above process is completely automated, ensuring no impact, surge, or transition when switching capacitors.

    TCR Type SVC Device

    The TCR type SVC device mainly consists of two parts: TCR (thyristor controlled reactor) and FC (filter capacitor bank). The FC circuit combines filtering function and can provide fixed capacitive reactive power, while the TCR circuit changes the inductive reactive power output of the phase controlled reactor through thyristor control. Due to the extremely fast dynamic response speed of thyristors, with a response time of less than 10 milliseconds, real-time dynamic compensation of reactive power can be achieved. Especially for three-phase AC arc furnace loads, the voltage fluctuations and flicker generated can be minimized. At the same time, TCR type SVC has phase separation regulation function, which can balance the unbalanced loads of three-phase AC arc furnaces and other loads, and suppress the negative sequence component of the power grid to the minimum.

    MV SVC for Solve Flickelharmonic and Dynamic Reactive Compensation Problems
    Products Advantage

    The thyristor valve adopts a photoelectric triggering method, with thyristor BOD protection, strong anti-interference ability, and reliable protection;

    The valve body design adopts a horizontal design, with compact equipment, reliable operation, and less maintenance workload;

    Fiber optic communication is used between the control system and the power unit, resulting in high signal stability;

    The thyristor controlled reactor has protection functions such as loss of synchronous power supply, loss of pulse, pulse imbalance, and thyristor breakdown.

    Frequently Asked Questions
    What components make up the high-voltage TSC dynamic reactive power compensation device?

    The device consists of a control system, triggering system, thyristor monitoring system, pulse transformer, capacitor, reactor, and protection unit.

    How does the TSC device ensure smooth switching without surges?

    Its control system detects reactive power in real time and automatically determines the correct capacitor branch to switch. It then controls the corresponding thyristor valve group to achieve automated switching with zero impact, surge, or transition.

    What are the core parts of the TCR type SVC device?

    The TCR type SVC device mainly consists of the TCR (thyristor controlled reactor) and the FC (filter capacitor bank).

    What is the response time of the TCR type SVC device?

    The response time is extremely fast—less than 10 milliseconds—allowing for real-time dynamic compensation of reactive power and minimizing voltage fluctuations and flicker.

    How does the TCR type SVC handle unbalanced loads?

    It features a phase separation regulation function that balances unbalanced loads (such as three-phase AC arc furnaces) and minimizes the negative sequence component of the power grid.

    What protections are integrated into the thyristor controlled reactor?

    It includes protection functions for loss of synchronous power supply, loss of pulse, pulse imbalance, and thyristor breakdown.

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