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Facing increasingly stringent power quality requirements and limited space conditions, the renovation of old distribution rooms is encountering unprecedented challenges.
Traditional compensation devices face two major problems: dangerous sparks are generated when mechanical switches are disconnected, and tens of thousands of dollars are required to replace parts and shut down for maintenance each year.
Among the numerous power quality challenges faced by modern power systems, harmonic pollution and insufficient reactive power are the two core issues that most severely affect the stable operation of the power grid.
In this article, the Chief Electrical Engineer of Geyue Electric will guide you from the limitations of traditional control methods to the innovative application of AI algorithms, deeply exploring how AI algorithms will optimize SVG performance and comprehensively analyzing the changes that AI technology innovation will bring to the reactive power compensation field.
The traditional split compensation solution of capacitor + contactor + controller has drawbacks in daily factory use: frequent ablation of contacts will consume tens of thousands of spare parts per month, delayed mechanical response will lead to continuous power supply fines, and failures in the collaboration of multiple components require real-time maintenance by electricians.
In this article, the Chief Electrical Engineer of Geyue Electric will explore why the oil and gas industry has become a new growth point for reactive power compensation from the perspective of a low-voltage reactive power compensation equipment manufacturer. By analyzing the industry characteristics, technical requirements and market drivers of the oil and gas industry, the development potential of this emerging market will eventually be revealed.
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