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海博思创助力蒙东地区首个新型独立储能项目顺利建成
中关村储能产业技术联盟· 2025-09-16 08:17
Core Viewpoint - The article highlights the successful completion of the first independent energy storage project in the Inner Mongolia region, showcasing advanced technology and design tailored to extreme environmental conditions [2][3]. Group 1: Project Overview - The project, located in the Keshiketeng Banner of Inner Mongolia, features a capacity of 150MW and 600MWh, designed to withstand extreme temperatures ranging from -30.7°C to 35°C [2]. - The energy storage system utilizes Haibo Sichuang's flagship products, emphasizing safety, low Levelized Cost of Storage (LCOS), high integration, long lifespan, and strong environmental adaptability [2]. Group 2: Technology and Implementation - The project employs a grid-connected energy storage technology that simulates synchronous generator characteristics, enabling millisecond-level response to grid inertia [3]. - It includes real-time voltage regulation and dynamic frequency adjustment capabilities, enhancing grid resilience under complex operating conditions [3]. - The entire project process, from contract signing to delivery and commissioning, was completed efficiently in just 30 calendar days [3]. Group 3: Data Management and Efficiency - The project integrates Haibo Sichuang's AI cloud platform, establishing a comprehensive data traceability system covering the entire lifecycle from battery cells to on-site operations [4]. - Utilizing artificial intelligence algorithms, the platform enables proactive fault warnings and precise diagnostics of system health, effectively reducing operational costs and improving lifecycle management efficiency [4].
标杆案例 | 海博思创助力蒙东地区首个新型独立储能项目顺利建成
海博思创· 2025-09-16 03:29
Core Viewpoint - The article highlights the successful completion of the 150MW/600MWh independent energy storage project in Inner Mongolia, which serves as a benchmark for the industry and addresses the challenges of renewable energy integration in the region [1][11]. Group 1: Product Strength - The project is located in the Keshiketeng Banner of Inner Mongolia, facing extreme weather conditions, including temperatures ranging from -30.7℃ to 35℃, necessitating high standards for product design and construction [2]. - The project utilizes Haibo Sichuang's flagship energy storage products, which are characterized by safety, low Levelized Cost of Storage (LCOS), high integration, long lifespan, and strong environmental adaptability [2]. Group 2: Technology, Speed, and Cost - The project employs advanced grid-forming energy storage technology, which simulates synchronous generator characteristics to enhance grid stability and resilience under complex conditions [4]. - The project was completed in just 30 days, showcasing the efficiency of Haibo Sichuang's integrated solution capabilities and the effective collaboration among various departments [6]. Group 3: Addressing Energy Challenges - The region experiences significant intermittency and volatility in renewable energy generation, leading to challenges in grid peak regulation and frequent curtailment of wind and solar power [8]. - The Haibo AI Cloud platform serves as the core intelligent control hub, enabling proactive fault warnings and precise diagnostics, thereby reducing operational costs and enhancing lifecycle management efficiency [9]. Group 4: Future Outlook - The energy storage station is a key hub for the region's energy transition, improving the flexibility of the grid and providing various services such as peak shaving, frequency regulation, and black start capabilities [11]. - Haibo Sichuang aims to drive the reconstruction of energy ecosystems through "Energy Storage + X" initiatives, accelerating the industrialization of new energy storage projects and contributing to the achievement of carbon neutrality goals [11].