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永联科技光储充直柔海外项目助力约旦零碳能源发展
Zhong Guo Neng Yuan Wang· 2025-09-25 08:46
Core Insights - Shenzhen Yonglian Technology Co., Ltd. has successfully launched its first "photovoltaic-storage-charging-direct current flexible" smart microgrid station in Jordan, marking a significant contribution to the country's zero-carbon energy development [1][8] - The project aligns with Jordan's comprehensive energy strategy (2020-2030) aimed at transforming the energy structure and ensuring sustainable energy supply [3][8] Project Overview - The smart microgrid station was built in collaboration with local Jordanian enterprises, with Yonglian Technology providing the complete system products and technical support [1][3] - The core equipment of the microgrid includes PCS converters, DC distribution control cabinets, DCDC energy storage cabinets, DCDC charging piles, and photovoltaic input units, forming a reliable zero-carbon energy ecosystem [3][5] Operational Efficiency - The project operates in an off-grid mode, prioritizing photovoltaic and energy storage for power supply, utilizing a "photovoltaic first, dynamic capacity increase" strategy [5] - Compared to traditional AC coupling architectures, the photovoltaic-storage-charging direct current microgrid system significantly enhances overall energy efficiency by reducing AC-DC conversion steps [5] Environmental and Economic Impact - The daily photovoltaic generation is sufficient to meet local green energy demands, substantially lowering operational costs and creating a win-win situation for investors, local communities, and environmental benefits [6][8] - The project supports Jordan's energy transition, promotes green transportation development, and ensures sustainable energy supply security [8] Future Prospects - Yonglian Technology plans to deepen the construction of photovoltaic-storage-charging direct current microgrids, integrating technologies such as photovoltaic, energy storage, charging, DC distribution, and flexible control [8] - The company aims to scale the innovative "photovoltaic-storage-charging-discharge" model to support the construction of a zero-carbon energy network and contribute to global new power system development and carbon neutrality goals [8]