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储能系统在东福山岛独立型微电网中的优化设计和应用
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为解决东福山岛军民供电供水困难的问题,基于实际工程开展风光柴储独立型微电网的研究和探索,重点分析储能系统的选型、优化设计和运行参数选择等问题。在储能系统选型中,综合考虑各种储能的技术、经济、安全和成熟度4个方面因素,现阶段最终选择基于可再生能源应用的改进型阀控铅酸蓄电池。在储能优化配置中,以尽量减少柴油发电机运行时间、最大化可再生能源利用率和最大化储能系统循环使用寿命为优化目标,进行多目标优化设计。在储能系统运行参数选择中,结合系统协调运行控制策略,以蓄电池组端电压为标准进行模式控制、模式切换和储能系统保

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国家高技术研究发展计划(863计划)

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Optimal Design and Application of Energy Storage System in Dongfushan Island Stand-alone Microgrid
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To solve the electricity and water consumption problems,a techno-economic research on wind-solar-diesel-storage isolated microgrid is made based on the engineering practice on Dongfushan Island.The paper focuses on the technology selection,optimal design and operation parameters optimization of the energy storage system in the Dongfushan stand-alone microgrid.By considering the technical,economic,security and maturity aspects,the option of improved valve-regulated lead-acid battery is chosen as the best solution for currently available technologies of energy storage.In the energy storage optimization configuration,multi-objective design is made with minimizing the operation time of diesel generator,maximizing the utilization of renewable energy,and maximizing the lifetime of the energy storage system as the optimization objectives.As for the selection of the energy storage systems operation parameters,by referring to the coordinated operation control strategy,the terminal voltage of battery banks is adopted as the standard to do the mode control,mode switch and storage system protection.The operation parameters are optimally selected to ensure that the microgrid operates orderly,efficiently and reliably.The actual operation analysis demonstrates the practicability and effectiveness of the research method.

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引用本文
[1]赵波,张雪松,李鹏,等.储能系统在东福山岛独立型微电网中的优化设计和应用[J].电力系统自动化,2013,37(1):161-167. DOI:10.7500/AEPS201208166.
ZHAO Bo, ZHANG Xuesong, LI Peng, et al. Optimal Design and Application of Energy Storage System in Dongfushan Island Stand-alone Microgrid[J]. Automation of Electric Power Systems, 2013, 37(1):161-167. DOI:10.7500/AEPS201208166.
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  • 收稿日期:2012-08-20
  • 最后修改日期:2012-12-06
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  • 在线发布日期: 2013-01-06
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