Our Company Attends NESP 2026, Charting New Directions for Smart New Energy Systems
Our Company Attended the 5th International Conference on New Energy Systems and Power Engineering – Keeping Pace with Cutting-Edge Trends to Drive Product Upgrades
From August 8 to 10, 2026, the 5th International Conference on New Energy Systems and Power Engineering (NESP 2026) was successfully held in Shenzhen. Hosted by the Institute of Electrical and Electronics Engineers (IEEE), the conference brought together hundreds of experts, scholars, corporate technology leaders, and research institute representatives from more than 20 countries and regions worldwide. As an innovative practitioner in the new energy and power engineering sector, our company was honored to be invited to participate and to engage in discussions on the industry’s future with peers.
During the conference, we actively attended keynote speeches, panel discussions, and technical sub-forums, covering international hotspots such as advanced energy storage technologies, smart microgrids, grid-integration control of high-penetration renewables, digitalization and AI empowerment of power systems, and hydrogen energy with fuel cell system integration. Numerous world-renowned academics presented their latest research findings on system stability analysis, energy management strategy optimization, and power electronic device reliability. In particular, topics such as “grid-forming converter control” and “data-driven renewable power forecasting” left a deep impression on us.
Through this academic exchange, we not only broadened our global vision but also gained a clearer understanding of the inevitable trend that future new energy systems are moving toward “high resilience, high intelligence, and high synergy.” Power engineering is rapidly shifting from the traditional “generation follows load” model to a deeply interactive “source–grid–load–storage” new-type power system. The integrated application of digital simulation, real-time communication, and edge computing is becoming a critical enabler for improving overall system performance.
Standing at the forefront of industrial transformation, we recognize that only through continuous learning and rapid iteration can we translate cutting-edge theories into the core competitiveness of our market-ready products. Moving forward, inspired by the insights gained at the conference, we will focus on optimizing our products in the following key areas:
Enhancing multi-scenario adaptability of energy storage systems, with improved dynamic response and fault ride-through capabilities;
Integrating lightweight AI-based forecasting algorithms to boost the accuracy of renewable energy output predictions and reduce curtailment rates;
Upgrading our system-level co-simulation platform to enable full-chain digital twin verification from components to plant-level operations;
Actively participating in industry standard discussions and incorporating international best-practice testing specifications into our R&D processes.
We firmly believe that, by combining the nourishment from international academic exchanges with our solid engineering expertise, our company will maintain a leading edge in the upcoming wave of technological advancements, delivering more efficient, safer, and smarter new energy power solutions to our customers. In the future, we will continue to embrace global innovation with an open mindset, drive the green energy transition with our technological strengths, and contribute our corporate efforts to achieving carbon peaking and carbon neutrality goals.
