The integrated intelligent control system tailors a smart power supply and consumption solution for enterprises according to the characteristics of their power supply and consumption systems. It includes plant level automation systems, substation automation, protection systems, power electronics reactive power compensation products, power simulation training products, MV and LV switchgear products, etc. The entire solutions cover a complete range of product types, encompassing all aspects of protection and control in the enterprise's power supply and consumption system.
MoreThis solution applies to power supply systems for metros, trams, railways, and similar scenarios. It includes: Railway Power System Intelligent O&M System Railway Power System Monitoring System Railway AC/DC Protection PQSS Power Quality Supervision System Railway Power System Dispatching System Traction Substation Automation System Railway Remote Terminal Unit (RTU) The solution provides a modern operational management platform for rail transit power system, enabling networked, automated, and scientific operation management to enhance power stability and ensure safer, more reliable system performance.
MoreThe GSC series SVG (Static Var Generator) by SIFANG. is a cutting-edge dynamic reactive power compensation device. The core of the system utilizes a mature cascaded structure from the power electronics converter domain. Each phase consists of multiple compact and standardized power units connected in series. Built on the company’s unified software and hardware control platform—proven in over ten thousand successful applications—the GSC series SVG delivers exceptional functionality, outstanding performance, and advanced control strategies. The GSC series SVG effectively mitigates voltage fluctuations, power factor instability, and harmonic distortions caused by the intermittent nature of wind and solar power generation, ensuring grid compliance and system reliability.
MoreIt applies to enterprises with high energy consumption and a large proportion of electricity costs, such as steel metallurgy, electrolytic aluminum, industrial silicon, data centers, and papermaking. It also applies to enterprises located in remote areas that cannot rely on the public power grid for power supply. By using the enterprises' self-owned power plants to supply power to production loads, enterprises can achieve self-generation and self-consumption of electricity, realize the circular utilization of energy, and ensure the safe and stable operation of the power grid. It is also applicable to key production safety enterprises like those in the petrochemical industry, which have high requirements for the safety and continuity of production power supply. When the enterprise power grid is disconnected from the public power grid, the self-owned power plants can be used to drive important loads to continue operating, thus ensuring the safe production of the enterprises.
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