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    Suzhou Electric Appliance Research Institute
    期刊號: CN32-1800/TM| ISSN1007-3175

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    小水電站內電轉氣及儲能設備協同規劃

    來源:電工電氣發布時間:2020-01-19 13:19 瀏覽次數:948
    小水電站內電轉氣及儲能設備協同規劃
     
    王玕1,王智東1,張紫凡1,陳志峰2
    (1 華南理工大學廣州學院 電氣工程學院,廣東 廣州 510800;2 廣東電網有限責任公司韶關供電局,廣東 韶關 512026)
     
        摘 要:電轉氣(Power to Gas,P2G)和儲能技術的發展,為解決小水電棄水問題提供了途徑。以總收益最高為目標函數,建立了小水電站優化配置P2G設備和儲能設備的協同規劃模型,同時建立了能源轉換設備的投資成效評估體系。仿真分析了配置能源轉換設備前后小水電站的收益和水電消納情況,驗證了P2G設備和儲能設備協同配置對提高水電消納和水電站收益的有效性。
        關鍵詞:P2G設備;小水電;投資成效評估;協同規劃
        中圖分類號:TM612     文獻標識碼:A     文章編號:1007-3175(2020)01-0066-04
     
    Coordinated Planning of P2G and Energy Storage Equipment in Small Hydropower Stations
     
    WANG Gan1, WANG Zhi-dong1, ZHANG Zi-fan1, CHEN Zhi-feng2
    (1 School of Electrical Engineering, Guangzhou College of South China University of Technology, Guangzhou 510800, China;
    2 Shaoguan Power Supply of Guangdong Power Grid Co., Ltd, Shaoguan 512026, China)
     
        Abstract: The development of power to gas (P2G) and energy storage technology provides a way to avoid the unnecessary losses caused by abandoned water.Taking the highest total revenue as the objective function, this paper established a collaborative planning model of the optimal allocation of P2G equipment and energy storage equipment for small hydropower stations, as well as an investment effectiveness evaluation system of energy conversion equipment in operation at the same time.This paper simulates and analyzes the revenue and hydropower absorption of small hydropower station before and after the allocation of energy conversion equipment, and verifies the effectiveness of the collaborative allocation of P2G equipment and energy storage equipment in improving the revenue and hydropower absorption.
        Key words: power to gas equipment; small hydropower; investment effectiveness evaluation; coordinated planning
     
    參考文獻
    [1] 黃偉,崔屹平,黃婷,等. 考慮小水電季節特性的微網經濟運行[J]. 現代電力,2014,31(1):1-6.
    [2] 陳志峰, 陳娟, 李海鋒, 等. 含小水電地區電網過電壓分析及抑制措施[J]. 電力建設,2015,36(4):21-26.
    [3] 梅建春,衛志農,張勇,等. 電- 氣互聯綜合能源系統多時間尺度動態優化調度[J]. 電力系統自動化,2018,42(13):36-42.
    [4] TRIFONOVT O.Coordination of battery energy storage and power-to-gas in distribution systems[J].Protection and Control of Modern Power Systems,2017,2(1):38.
    [5] 王力,王玕. 計及電轉氣設備的小水電站優化運行分析[J]. 電工電氣,2019(5):30-32.
    [6] 許志恒,張勇軍,陳澤興,等. 考慮運行策略和投資主體利益的電轉氣容量雙層優化配置[J]. 電力系統自動化,2018,42(13):76-84.
    [7] 劉天琪,曾紅,何川,等. 考慮電轉氣裝置和風電場協同擴建氣電互聯綜合能源系統規劃[J]. 電力自動化設備,2019,39(8):144-151.
    [8] 李斐,黎燦兵,孫凱,等. 微電網中混合儲能系統的規劃運行一體化配置方法[J]. 控制理論與應用,2019,36(3):453-460.
    [9] 李建林,郭斌琪,牛萌,等. 風光儲系統儲能容量優化配置策略[J]. 電工技術學報,2019,39(8):144-151.
    [10] GOETZ M, LEFEBVRE J, MOERS F, et al.Renewable power-to-gas: a technological and economic review[J]. Renewable Energy,2016,85:1371-1390.
    [11] 許志恒. 電- 氣互聯系統優化運行及其電轉氣設備規劃研究[D]. 廣州:華南理工大學,2018.
    [12] 史立山. 中國能源現狀分析和可再生能源發展規劃[J]. 可再生能源,2004(5):1-4.
    [13] WANG Ruogu, DAI Lisen, LIANG Zhirui, et al. Performance Comparison of Microgrid Integrated Energy Storage System Based on Different Kinds of Batteries[J].Power Capacitor & Reactive Power Compensation, 2019,40(1):166-171.

     

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