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3 days ago · Energy Square ·

Sungrow Leverages Decade-long Shanxi Layout to Unveil Innovative Energy Technologies at 2026 Taiyuan

<p>The 10th Taiyuan Energy Low‐Carbon Development Forum was recently held in Taiyuan, Shanxi. As a representative new‐energy enterprise, Sungrow was invited to attend the event. Together with guests from governments, the energy sector and research institutions, it explored innovative pathways for energy transition and green development under the "Dual Carbon" goals.</p><p>The 15th Five‐Year Plan period has now fully commenced. The <em>15th Five‐Year Plan for the Development of a New‐Type Energy System</em> explicitly calls for accelerated efforts to build a new‐type energy system and a new‐type power system. Against the backdrop of sustained growth in installed new‐energy capacity, how to drive new‐energy development from "scale expansion" toward "high‐quality growth" and speed up the establishment of a new‐type energy system adapted to high‐penetration new energy has become a key topic of industry attention.</p><p>As China's vital comprehensive energy base and pilot province for comprehensive energy‐revolution reforms, Shanxi is at a critical stage of shifting its traditional‐energy advantages toward green and low‐carbon strengths. According to State Grid Shanxi Electric Power Company, as of July 2026, Shanxi’s installed new‐energy storage capacity has exceeded 5 GW. The Taiyuan Energy Low‐Carbon Development Forum has grown into a major platform for energy‐technology exchanges and industrial cooperation.</p><p>To date, Sungrow has invested more than RMB 7 billion cumulatively in Shanxi and built new‐energy wind‐solar projects totalling over 1.65 GW. It has further developed the Datong R&amp;D Base, covering approximately 1.14 million square metres with a total investment of around RMB 600 million. The base builds a full‐chain demonstration and testing platform for PV and energy storage covering coordinated development of "source‐grid‐load‐storage". It features 12 PV demonstration zones, a 10 MW/20 MWh energy‐storage demonstration zone and a 220 kV step‐up substation, supporting new‐energy technology R&amp;D, product testing and system‐level verification. At this exhibition, Sungrow displayed its technological innovations in PV‐storage integration and new‐energy systems: the 465 kW string inverter and the PowerTitan 3.0 power‐energy‐storage system, drawing visits and discussions from numerous forum participants.</p><p><img src="https://energyplanet.oss-cn-shenzhen.aliyuncs.com/uploads/images/20260907172620_9079cca4.png" alt="" loading="lazy" decoding="async" /></p><p>During the forum, Pan Nian'an, Chief Expert and Chief Engineer for Ground‐Mounted PV at Sungrow, shared Sungrow's achievements in PV‐storage system architecture and grid‐forming technology innovation centred on full‐scenario new‐energy applications and metal‐enabled capabilities, offering fresh technical insights to accelerate new energy's evolution into a major power source.</p><p>Over the past two decades, the new‐energy industry has achieved rapid growth mainly through equipment‐driven innovations such as component upgrades and efficiency improvements. Looking ahead, new requirements including multi‐port access, multi‐energy flow paths, multi‐timescale coordination and multi‐objective optimisation are pushing new‐energy innovation from the "equipment era" into the "system era".</p><p>Against this backdrop, Sungrow's matrix inverter integrates PV inversion, energy‐storage conversion, energy routing and grid‐forming control. With multi‐port access, constant‐voltage DC busbars, reconfigurable energy paths and hierarchical coordinated control, it enables PV and energy‐storage assets to evolve from "external coupling" toward "native integration", further lifting system efficiency, dispatch flexibility and grid‐friendly performance.</p><p>To address weak‐grid and broad‐band oscillation challenges brought by high‐penetration new‐energy integration, Sungrow keeps advancing core grid‐forming innovations including dynamic impedance reshaping, adaptive synchronous phase‐locking and dual‐source integrated control. These technologies enable stable adaptive operation under both strong‐ and weak‐grid conditions, with technical performance validated via field demonstrations such as projects in Hainan Prefecture, Qinghai Province.</p><p>"Continuous technological breakthroughs and progressive engineering deployment are expected to further boost the operational stability of new‐energy facilities under extremely weak‐grid conditions, mitigate oscillation‐caused disconnections, unlock transmission capacity for weak‐grid power stations and curtail power‐generation losses," said Pan Nian’an. Moving forward, Sungrow will keep advancing new‐energy technological innovation, actively engage in Taiyuan's low‐carbon‐energy transition practices, help build a safer, more stable and more efficient new‐type energy system, and jointly shape a green‐energy future.</p><p><img src="https://energyplanet.oss-cn-shenzhen.aliyuncs.com/uploads/images/20260907172621_ac8a9a7a.png" alt="" loading="lazy" decoding="async" /></p>

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