• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


800kV 1100kV Smoothing Reactor Connected in Series

  • 800kV 1100kV Smoothing Reactor Connected in Series

Key attributes

Brand POWERTECH
Model NO. Smoothing Reactor
Rated voltage 1100KV
Rated normal current 6250A
Series PKDGKL
Description

Description

The smoothing reactor is connected in series in high-voltage DC converter stations or installed in the middle of back-to-back DC lines to reduce harmonic currents in DC lines, limit inrush currents when a fault occurs, limit the rise rate of DC reverse-phase currents and improve the stability of the transmission system.

Electrical schematic:

企业微信截图_17223904252146.png

Reactor Code and Designation

企业微信截图_17223904738392.png

Parameters:

image.png

What is the principle of the smoothing effect of the inductor of the series smoothing reactor on the current?

Smoothing Effect of Inductance on Current:

  • Based on the principle of electromagnetic induction, when current flows through the windings of a reactor, it generates a magnetic field around the windings. Changes in this magnetic field induce an electromotive force (EMF), which opposes changes in the current.

  • In a circuit, a smoothing reactor is connected in series between the load and the power source. For fluctuating components of the input current, such as harmonic currents in AC power supplies or pulse currents from power electronic devices, the inductance of the reactor provides a counteracting effect, making the current changes smoother.

Example:

  • In a power system with a large number of nonlinear loads (such as rectifiers, inverters, etc.), the load current can exhibit pulsating or rich harmonic content. A smoothing reactor, through its inductive properties, can slow down the rate of current rise and fall, reducing the peak and trough values of the current. This makes the load current more closely resemble an ideal smooth DC or sinusoidal AC current, thereby reducing the adverse effects of current fluctuations on the system and equipment.


Know your supplier

Online store
On-time delivery rate
Response time
100.0%
≤4h
Company overview
Workplace: 580000m² Total staff: 100+ Highest Annual Export(usD): 120000000
Services
Business Type: Design/Manufacture/Sales
Main Categories: High Voltage Electrical Apparatus
Related Products
Related Knowledges
  • How has g3 technology changed the global climate?
    The Alternative to SF6 for High Voltage ApplicationsRemoving Greenhouse Gases from the GridNineteen of the warmest years on record have occurred since 2000, where greenhouse gases (GHGs) are at the root cause of climate change. Sulfur hexafluoride (SF₆), an insulating gas used in high-voltage switchgear, is estimated to contribute 23,500 times more than carbon dioxide (CO₂) to the greenhouse effect and can remain in the atmosphere for 3,200 years. Previously, Power Generation and Transmission ut
    05/09/2026
  • Difference Between Maintenance Earthing Switches and Fast Earthing Switches?
    Maintenance earthing switches and fast earthing switches (FES) are two types of switches with distinct characteristics.Maintenance Earthing SwitchesThese are typically configured alongside the disconnectors on both sides of a circuit breaker. Their sole purpose is to provide safety grounding on both sides of the circuit breaker during equipment maintenance.Fast Earthing Switches (FES)These are positioned on the line side of the outgoing disconnector in an outgoing circuit. They serve two primary
    05/08/2026
  • SiC MOSFET Solid State Circuit Breakers for Low Voltage Protection
    1. Core Principle SummaryIn simple terms, its core principle can be summarized as a three-step AC-DC-AC conversion, with the key step being to increase the frequency first, then transform the voltage.2. Working PrincipleRectification:First, the input line-frequency AC power (e.g., 50 Hz or 60 Hz) is rectified into DC power using power electronic devices (such as IGBTs). This step converts low-frequency AC into stable DC, preparing it for subsequent processing.High-Frequency Chopping (Inversion):
    05/03/2026
  • Solid-State Circuit Breakers Set to Revolutionize Circuit Protection
    Custom modules built with SiC MOSFETs minimize the impacts of short circuits and overloadsNearly every electrical engineer has wondered at some point whether it is possible to design a non-mechanical circuit breaker. There are plenty of reasons for this line of thought: would it not be better to use semiconductors to interrupt faults or handle overload conditions?However, deeper investigation inevitably reveals major obstacles. For one thing, the breakdown voltage of familiar power devices is ar
    05/03/2026
  • 2025 Complete Guide to Solar Cell Selection-Scenario Adaptation
    Solar Panel – Comprehensive Guide to Solar Cell SelectionA systematic selection reference for photovoltaic engineers and technicians, covering technical principles, key parameters, application scenarios and development trends.Data baseline: 2024–2025 industrial mass-production levels (CPIA data)1. The Role of Solar Cells in Photovoltaic SystemsMore than 90% of the conversion efficiency and power generation performance of PV modules are determined by solar cells. As the core semicondu
    05/03/2026
  • Technological Evolution of Silicon Carbide (SiC) Based DC Solid-State Circuit Breakers
    1. Introduction: Protection Challenges in the DC Distribution EraAs the global energy transition accelerates, DC microgrids, high-voltage DC (HVDC) power supplies for data centers, and large-scale energy storage systems have become critical components of power systems. However, DC systems lack a natural zero-crossing point and possess extremely low system impedance, leading to a rapid rate of rise of fault current (di/dt). Traditional mechanical circuit breakers, limited by millisecond-level ope
    04/25/2026
Related Free tools
Send inquiry
+86
Click to upload file
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.