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

Article retrieval

文章檢索

首頁 >> 文章檢索 >> 文章瀏覽排名

考慮電能質(zhì)量的光伏優(yōu)化配置研究

來源:電工電氣發(fā)布時間:2020-02-27 14:27 瀏覽次數(shù):1259
考慮電能質(zhì)量的光伏優(yōu)化配置研究
 
史恒逸1,鄒德龍2
(1 南京理工大學 自動化學院,江蘇 南京 210094;2 南瑞集團有限公司(國網(wǎng)電力科學研究院有限公司),江蘇 南京 211000)
 
摘 要:粒子群算法和遺傳算法是現(xiàn)在光伏規(guī)劃中常用的方法,但前者容易陷入局部最優(yōu)點,而后者的迭代收斂速度較慢且計算過程繁瑣。提出了一種新的混合優(yōu)化算法,即將遺傳算法與粒子群算法結(jié)合起來,用二進制編碼的方式將光伏的接入位置加入到粒子的信息中,利用仿真實驗對考慮電能質(zhì)量的光伏優(yōu)化配置進行了驗證分析,并利用改進的混合優(yōu)化算法對數(shù)學模型進行求解,仿真結(jié)果證明了改進規(guī)劃算法的合理有效性。
關(guān)鍵詞:光伏規(guī)劃;電能質(zhì)量;配網(wǎng)規(guī)劃;規(guī)劃算法
中圖分類號:TM615;TM715 文獻標識碼:A 文章編號:1007-3175(2020)02-0006-06
 
Research on Optimal Configuration of Photovoltaic System Considering Power Quality
 
SHI Heng-yi1, ZOU De-long2
(1 School of Automation, Nanjing University of Science and Technology, Nanjing 210094, China;
2 NARI Group Corporation (State Grid Electric Power Research Institute), Nanjing 211 000, China)
 
    Abstract: Particle swarm optimization (PSO) and genetic algorithm (GA) are commonly used in photovoltaic programming nowadays, but the former is easy to fall into local optimum, while the latter has a slow convergence rate and a cumbersome calculation process. This paper proposed a kind of new hybrid optimization algorithm, which combined GA with PSO and used the binary coding mode to make the interconnected location of photovoltaic join the message of particle. The simulation experiment was used to carry out the check analysis to the optimal configuration of photovoltaic system considering power quality and the improved hybrid optimization algorithm was used to solve the problem of mathematic model. The simulation experiments show that the improved planning algorithm is reasonable and effective.
    Key words: photovoltaic planning; power quality; distribution network planning; planning algorithm
 
參考文獻
[1] 耿曉娜,劉俊德,范振亞,劉偉東. 含充電站及光伏電源的配電網(wǎng)協(xié)調(diào)規(guī)劃[J]. 華北電力技術(shù),2017(5):1-8.
[2] 丁磊,劉俊勇,劉友波,向月,蘇韻掣,張逸. 考慮分布式發(fā)電商投資的區(qū)域配電網(wǎng)光伏儲能容量配置[J]. 可再生能源,2017,35(3):374-383.
[3] 涂宏燁,張冀新. 基于二層規(guī)劃模型光伏電站經(jīng)濟性評價[J]. 中國集體經(jīng)濟,2016(28):57-59.
[4] 韓曉娟,王麗娜,高僮,修曉青. 基于成本和效益分析的并網(wǎng)光儲微網(wǎng)系統(tǒng)電源規(guī)劃[J]. 電工技術(shù)學報,2016,31(14):31-39.
[5] 程志友,朱唯韋,陶青,王淼,胡正楊. 基于改進雷達圖的配電系統(tǒng)電能質(zhì)量評估方法[J]. 電測與儀表,2019,56(14):34-39.
[6] 鐘建偉,姜芮,王晨. 高滲透率的分布式電源并網(wǎng)后電能質(zhì)量評估[J]. 電氣自動化,2018,40(1):48-50.
[7] 皮顯松,李慶生,趙慶明,胡畔,鄧云飛. 高鐵污染性負荷接入電網(wǎng)規(guī)劃模型[J]. 電力系統(tǒng)及其自動化學報,2018,30(2):129-137.
[8] 金卓勍,向鐵元,陳紅坤,陳若男,陶圓. 考慮電能質(zhì)量問題的分布式光伏發(fā)電接入規(guī)劃方法[J].電力系統(tǒng)保護與控制,2017,45(9):1-8.
[9] 熊以旺,程浩忠,王海群,徐俊. 基于改進AHP和概率統(tǒng)計的電能質(zhì)量綜合評估[J]. 電力系統(tǒng)保護與控制,2009,37(13):48-52.
[10] 張占安,蔡興國. 采用熵理論確定抽水蓄能容量[J]. 電機與控制學報,2014,18(3):34-39.
[11] 丁少倩,林濤,徐遐齡,黃景慧,田春箏. 基于改進的AHP-熵權(quán)法的電網(wǎng)綜合脆弱性評估方法研究[J]. 電測與儀表,2017,54(4):28-33.
[12] 蔣曉屾,任佳,顧敏明. 多維度慣性權(quán)重衰減混沌化粒子群算法及應用[J]. 儀器儀表學報,2015,36(6):1333-1341.
[13] 包廣清,楊國金,楊勇,常勇. 基于改進遺傳算法的光伏發(fā)電并網(wǎng)優(yōu)化配置[J]. 電力建設(shè),2014,35(6):13-17.