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“Neural Networks” in the Intelligent Era: Reshaping the Future of New Power Systems
Looking ahead to 2035, global electricity consumption will surge from 28 trillion kilowatt-hours in 2024 to 40 trillion kilowatt-hours. The power generation system will also undergo a historic transformation—completely breaking away from its reliance on traditional fossil fuels such as coal and natural gas. By then, the share of renewable energy capacity will exceed 70%, with new energy sources like wind and solar accounting for as much as 60% of the total. Moreover, the electricity generated by these renewables will historically surpass that from fossil fuels, becoming the mainstay of the global power supply.
Meanwhile, the artificial intelligence revolution is reshaping human civilization on an unprecedented scale and depth. Underlying this transformation is an exponentially growing demand for computing power and energy consumption. The power consumption of a single superintelligent data center has already reached the level of billions of watts. Over the next five to ten years, the global power infrastructure’s capacity and energy supply resilience will become the core bottlenecks determining the pace of AI evolution and the height of our intelligent civilization. Against this backdrop, a new type of power system—characterized by a high proportion of renewable energy sources and deep integration with digital and intelligent technologies—is emerging as the “energy neural network” that underpins the intelligent era: it not only transmits electricity but also carries computing power, connects intelligences, and drives the future.
However, the inherent intermittency and volatility of renewable energy sources pose unprecedented challenges to the stability, flexibility, and resilience of power systems. Grid-forming technology, as a key enabler for the next-generation power system, will serve as the cornerstone for ensuring the safe and reliable integration of high-proportion renewable energy sources and achieving efficient coordination among generation, transmission, load, and storage. The stable, efficient, and intelligent supply of new energy is no longer merely an engineering challenge—it has become a strategic issue that touches upon global energy security, digital sovereignty, and sustainable development.
To this end, we are the first to propose and put into practice an integrated innovation paradigm—“New Materials—New Equipment—New Systems”—which leverages breakthroughs in fundamental materials science to drive the transformation of high-end power equipment, uses equipment upgrades to empower the restructuring of system-level energy architectures, and ultimately builds a next-generation direct-power delivery system that integrates electricity and computing and seamlessly blends green and intelligent technologies. This paradigm not only provides a green, reliable, and efficient energy foundation for the intelligent world but also profoundly redefines global manufacturing value chains and technological ecosystems, guiding enterprises toward a new era of high-quality, high-efficiency, and highly sustainable productivity.
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