虚拟电厂运营管理平台

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江苏今夏用电负荷已三创新高
Xin Hua Ri Bao· 2025-08-15 06:40
这个夏天过半,江苏全省用电负荷已经三创新高,达到15281万千瓦,该负荷相当于近15亿盏100瓦的灯 泡同时点亮。 上亿负荷量级之下,每向上攀升100千瓦,保供压力都成倍放大—— 从"刚性供应"到"柔性精管",消费侧成为重要电力"资源池"。新华日报·交汇点记者从国网江苏省电力有 限公司获悉,江苏切实做细做实负荷资源管理,通过积极挖掘前置措施、灵活调度的新型平衡资源、精 准实施"节电响应",为电力供需平衡提供了全新解决方案。 多措并举,负荷管理精准高效 4月30日,江苏出台关于优化工商业分时电价结构促进新能源消纳降低企业用电成本支持经济社会发展 的通知,充分挖掘工商业用户调峰能力,增加工商业用户用电与新能源发电的适配互动,降低工商业用 户用电成本,协同助推电力市场加快建设,支持全省经济社会高质量发展。 "我们坚持政府主导,各地全面启动迎峰度夏电力负荷管理前置措施,通过引导企业错峰生产、组织企 业集中检修、调动自备电厂顶峰发电等组合拳,全力保障经济社会平稳运行和居民生活用电需求。"国 网江苏电力营销部市场处处长阮文骏表示,这也是落实电力保供的重要举措。 为此,国网江苏电力各地市公司主动靠前服务、提前摸排企业年度检 ...
15亿盏灯泡照见电网“柔性蜕变”
Xin Hua Ri Bao· 2025-08-14 21:51
Group 1 - Jiangsu's electricity load has reached a record high of 15,281 megawatts this summer, equivalent to nearly 1.5 billion 100-watt light bulbs being lit simultaneously [1] - The State Grid Jiangsu Electric Power Company has implemented proactive measures for electricity load management, transitioning from rigid supply to flexible management to support energy supply [1] Group 2 - In April, Jiangsu introduced an optimized time-of-use electricity pricing policy for industrial and commercial sectors, encouraging enterprises to adjust production schedules to alleviate peak load pressure [2] - The policy has led to a significant reduction in costs for enterprises and has facilitated the consumption of renewable energy during midday [2] Group 3 - On July 14, Jiangsu successfully conducted the largest provincial vehicle-to-grid (V2G) test in China, with 144 electric vehicles participating in reverse charging to the grid [3] - By the end of August, 80 virtual power plants had connected to the new system, aggregating a total capacity of 11.6 million kilowatts, with 25 virtual power plants registered in the spot market [3] Group 4 - Jiangsu launched the "Smart Summer Energy Saving" initiative, encouraging residents to adjust smart appliances to energy-saving modes during peak hours, with incentives such as electricity vouchers [4] - The initiative has successfully engaged over 100,000 households, achieving a peak load reduction of up to 33,000 kilowatts during peak times [4]