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基于通信局站结构极简化部署的智能错峰锂电系统

Intelligent staggered lithium battery system based on communication station structure with extremely simplified deployment
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摘要 随着国家发改委分时电价机制的发布及实施,找到有利于缓解通信局站电能差异性供需矛盾及提高能源利用效益的解决方案迫在眉睫。本文提出了一种基于通信局站结构极简化部署的智能错峰锂电系统,区别于传统错峰方案,该系统可以部署优势在于免电源与免合路器的混搭设计,彻底颠覆了传统供电模式,实现了全网范围内100%场景的极简错峰供电策略。该系统无需改造现有电源系统或调整电池工作时间,亦无需安装额外合路器,有效避免了宕站割接与复杂调测过程,极大降低了部署成本与维护难度。同时,该系统展现出卓越的场景适配能力,支持现网环境下极简叠加的规模化部署,有效实现更加优化的电力资源配置及看得见的收益,为通信网络的智能化、绿色化转型提供了强有力的技术支撑。 With the release and implementation of the time-of-use tariff mechanism of NDRC,it is urgent to find a solution to alleviate the discrepancy between supply and demand of power in communication stations and improve the efficiency of energy utilization.In this paper,an intelligent staggered lithium battery system based on the communication station structure is proposed,which is different from the traditional staggered peak scheme.The advantage of this system is that it can be deployed in the hybrid design of power-free and combinner-free,which completely subverts the traditional power supply mode and realizes the minimalist staggered peak power supply strategy for 100%scenes in the whole network.The system does not need to modify the existing power system or adjust the battery working time,nor does it need to install additional combiner,effectively avoiding the shutdown station cutover and complex commissioning process,greatly reducing the deployment cost and maintenance difficulty.At the same time,the system shows excellent scenario adaptation ability,supports the scale deployment of minimalist superposition in the live network environment,effectively realizes more optimized power resource allocation and visible benefits,and provides a strong technical support for the intelligent and green transformation of the communication network.
作者 王翔 WANG Xiang(China Mobile Group He'nan Co.,Ltd.,Zhengzhou 450000,China)
出处 《电信工程技术与标准化》 2024年第S01期106-109,共4页 Telecom Engineering Technics and Standardization
关键词 极简化 智能 错峰锂电 minimization intelligent peak shifting lithium battery
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