文章摘要
李艳,何志恒,田杰,等.远洋海岛群新能源消纳与能量打包外送策略[J].电力系统自动化. DOI: 10.7500/AEPS20181127004.
LI Yan,HE Zhiheng,TIAN Jie, et al.Strategies of Renewable Energy Accommodation and Energy Package Delivery for Pelagic Clustering Islands[J].Automation of Electric Power Systems. DOI: 10.7500/AEPS20181127004.
远洋海岛群新能源消纳与能量打包外送策略
Strategies of Renewable Energy Accommodation and Energy Package Delivery for Pelagic Clustering Islands
DOI:10.7500/AEPS20181127004
关键词: 新能源消纳  弹性价格  能量打包外送  远洋海岛群
KeyWords: 
上网日期:2019-07-09
基金项目:国家自然科学基金(51537003)
作者单位E-mail
李艳 深圳供电局有限公司电力科学研究院 dyhust@163.com 
何志恒 强电磁工程与新技术国家重点实验室&中欧清洁与可再生能源学院 897195842@qq.com 
田杰 深圳供电局有限公司电力科学研究院 tianjie@163.com 
杨飞鹏 强电磁工程与新技术国家重点实验室 44567488@qq.com 
林湘宁 强电磁工程与新技术国家重点实验室 xiangning.lin@hust.deu.cn 
陈哲 丹麦奥尔堡大学能源技术学院 zch@et.aau.dk 
摘要:
      在远洋海岛群开发新模式下,将少人居住但新能源丰富的岛屿开发为资源岛,并利用岛上新能源生产负荷中心岛所需的物资和能量,以提高负荷中心岛物资和能量的保障能力。然而,由于地理位置受限,岛屿间物资能量难以实时输送。资源岛如何根据负荷中心岛物资能量需求进行生产和转运是该方式顺利运转的关键环节。本文结合远洋海岛物资能量需求特点,提出一种以需求驱动生产的响应模式,基于物资能量“需求紧急度”制定能有序引导资源岛进行物资能量生产和转运的弹性价格,实现资源岛新能源高比例合理消纳,并适配负荷中心岛的物资能量需求。仿真结果验证了所提远洋海岛群新能源消纳与能量打包外送策略的有效性和优越性。
Abstract:
      Under a new model of pelagic clustering islands development, the island with few people living but with abundant new energy is developed as a resource island, to produce materials and energy needed for the load center island and hence to improve the support capacity of materials and energy on load center island. However, due to the limited geographical location, it is difficult to transfer material and energy between islands in real time. How to produce and transport materials and energy effectively according to the demand of the load center island is the key to run this model smoothly. This paper proposes a demand-driven production model taking the materials and energy demand characteristics of pelagic clustering islands into consideration, setting flexible price that can guide resource islands to produce and transport materials and energy orderly based on the urgency of materials and energy demand, to achieve a high ratio of reasonable consumption of new energy in resource islands and to adapt to materials and energy requirements of the load center island most rationally. The simulation results have verified the effectiveness and superiority of the proposed new energy consumption and energy package delivery strategies for pelagic clustering islands.
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