大云網 新技術電力軟件 正文 智能電網用戶需求側半實物仿真技術研究 2018-03-28 21:33:41 《電力信息與通信技術》微信公眾號 點擊量: 評論 (0) 隨著智能電網領域技術的迅速發展,需求響應以其較少的系統運行成本和提高電網可靠性的潛力逐漸成為研究的新熱點。文章基于國內外需求響應仿真技術的發展,提出了基于開放式自動需求響應(OpenADR)協議的用戶需求側半實物仿真技術。依托協仿真平臺VirGIL、智能電網用戶需求側仿真系統 summary of demand response in electricity markets[J]. Electric Power Systems Research, 2008, 78(11): 1989-1996. [5] STLUKA P, GODBOLE D, SAMAD T.Energy management for buildings and microgrids[C]// IEEE Conference on Decision and Control and European Control Conference(CDC-ECC) Orlando, FL, USA, 2011. [6] CHEN Zhi, WU Lei, FU Yong.Real-time price-based demand response management for residential appliances via stochastic optimization and robust optimization[J]. IEEE Trans on Smart Grid, 2012, 3(4): 1822-1831. [7] COSTANZO G T, ZHU G, ANJOS M F, et al.A system architecture for autonomous demand side load management in smart buildings[J]. IEEE Transactions on Smart Grid, 2012, 3(4): 2157-2165. [8] 許小亮. 基于人均農村居民點用地標準法的農村居民點整治潛力評價研究——以安徽省六安市為例[J]. 國土與自然資源研究, 2016(2): 7-9. XU Xiao-liang.Evaluation research on consolidation potential of rural residengtial area based on the land use standard method of rural residengtial area per capita—Taking Lu’an city in Anhui province for example[J]. Territory & Natural Resources Study, 2016(2): 7-9. [9] 殷樹剛, 張宇, 拜克明. 基于實時電價的智能用電系統[J]. 電網技術, 2009, 33(19): 11-16. YIN Shu-gang, ZHANG Yu, BAI Ke-ming.A smart power utilization system based on real-time electricity prices[J]. Power System Technology, 2009, 33(19): 11-16. [10] 盛萬興, 史常凱, 孫軍平, 等. 智能用電中自動需求響應的特征及研究框架[J]. 電力系統自動化, 2013, 37(23): 1-7. SHENG Wan-xing, SHI Chang-kai, SUN Jun-ping, et al.Characteristics and research framework of automated demand response in smart utilization[J]. Automation of Electric Power Systems, 2013, 37(23): 1-7. [11] 伍偉華, 龐建軍, 陳廣開, 等. 電力需求側響應發展研究綜述[J]. 電子測試, 2014(2): 86-94. WU Wei-hua, PANG Jian-jun, CHEN Guang-kai, et al.Research on development of electric power demand side response[J]. Electronic Test, 2014(2): 86-94. [12] 高賜威, 梁甜甜, 李慧星, 等. 開放式自動需求響應通信規范的發展和應用綜述[J]. 電網技術, 2013, 37(3): 692-698. GAO Ci-wei, LIANG Tian-tian, LI Hui-xing, et al.Development and application of open automated demand response[J]. Power System Technology, 2013, 37(3): 692-698. [13] 許曉慧, 辛建波, 范瑞祥, 等. 基于OpenADR 2. 0的需求響應信息交互機制研究及仿真驗證[J]. 華東電力, 2014, 42(7): 1294-1298. XU Xiao-hui, XIN Jian-bo, FAN Run-xiang, et al.Research and verification of demand response information interaction mechanism based on OpenADR 2. 0[J]. East China Electric Power, 2014, 42(7): 1294-1298. [14] 李湛清, 姚艷艷. 基于OpenADR的需求側管理[J]. 電測與儀表, 2010, 47(s1): 99-102. LI Zhan-qing, YAO Yan-yan.Demand side management based on OpenADR[J]. Electrical Measurement & Instrumentation, 2010, 47(s1): 99-102. [15] ROTGER-GRIFUL S, JACOBSEN R H.Control of smart grid residential buildings with demand response[M]// Chaos Modeling and Control Systems Design, Springer, Cham, 2015: 133-161. [16] ROTGER-GRIFUL S, CHATZIVASILEIADIS S, JACOBSEN R H, et al.Hardware-in-the-loop co-simulation of distribution grid for demand response[C]// Power Systems Computation Conference, IEEE, Genoa,Italy, 2016. [17] 單明. 智能電網用戶端需求響應仿真系統的研究與實現[D]. 上海: 華東理工大學, 2015. [18] 文傳源. 系統仿真理論的探索[J]. 系統仿真學報, 2005, 17(1): 1-6. WEN Chuan-yuan.Exploration on similarity theory for system simulation[J]. Journal of System Simulation,2005, 17(1): 1-6. [19] BUSHBY S T.BACnet TM: a standard communication infrastructure for intelligent buildings[J].Automation in Construction, 1997, 6(5-6): 529-540.
summary of demand response in electricity markets[J]. Electric Power Systems Research, 2008, 78(11): 1989-1996. [5] STLUKA P, GODBOLE D, SAMAD T.Energy management for buildings and microgrids[C]// IEEE Conference on Decision and Control and European Control Conference(CDC-ECC) Orlando, FL, USA, 2011. [6] CHEN Zhi, WU Lei, FU Yong.Real-time price-based demand response management for residential appliances via stochastic optimization and robust optimization[J]. IEEE Trans on Smart Grid, 2012, 3(4): 1822-1831. [7] COSTANZO G T, ZHU G, ANJOS M F, et al.A system architecture for autonomous demand side load management in smart buildings[J]. IEEE Transactions on Smart Grid, 2012, 3(4): 2157-2165. [8] 許小亮. 基于人均農村居民點用地標準法的農村居民點整治潛力評價研究——以安徽省六安市為例[J]. 國土與自然資源研究, 2016(2): 7-9. XU Xiao-liang.Evaluation research on consolidation potential of rural residengtial area based on the land use standard method of rural residengtial area per capita—Taking Lu’an city in Anhui province for example[J]. Territory & Natural Resources Study, 2016(2): 7-9. [9] 殷樹剛, 張宇, 拜克明. 基于實時電價的智能用電系統[J]. 電網技術, 2009, 33(19): 11-16. YIN Shu-gang, ZHANG Yu, BAI Ke-ming.A smart power utilization system based on real-time electricity prices[J]. Power System Technology, 2009, 33(19): 11-16. [10] 盛萬興, 史常凱, 孫軍平, 等. 智能用電中自動需求響應的特征及研究框架[J]. 電力系統自動化, 2013, 37(23): 1-7. SHENG Wan-xing, SHI Chang-kai, SUN Jun-ping, et al.Characteristics and research framework of automated demand response in smart utilization[J]. Automation of Electric Power Systems, 2013, 37(23): 1-7. [11] 伍偉華, 龐建軍, 陳廣開, 等. 電力需求側響應發展研究綜述[J]. 電子測試, 2014(2): 86-94. WU Wei-hua, PANG Jian-jun, CHEN Guang-kai, et al.Research on development of electric power demand side response[J]. Electronic Test, 2014(2): 86-94. [12] 高賜威, 梁甜甜, 李慧星, 等. 開放式自動需求響應通信規范的發展和應用綜述[J]. 電網技術, 2013, 37(3): 692-698. GAO Ci-wei, LIANG Tian-tian, LI Hui-xing, et al.Development and application of open automated demand response[J]. Power System Technology, 2013, 37(3): 692-698. [13] 許曉慧, 辛建波, 范瑞祥, 等. 基于OpenADR 2. 0的需求響應信息交互機制研究及仿真驗證[J]. 華東電力, 2014, 42(7): 1294-1298. XU Xiao-hui, XIN Jian-bo, FAN Run-xiang, et al.Research and verification of demand response information interaction mechanism based on OpenADR 2. 0[J]. East China Electric Power, 2014, 42(7): 1294-1298. [14] 李湛清, 姚艷艷. 基于OpenADR的需求側管理[J]. 電測與儀表, 2010, 47(s1): 99-102. LI Zhan-qing, YAO Yan-yan.Demand side management based on OpenADR[J]. Electrical Measurement & Instrumentation, 2010, 47(s1): 99-102. [15] ROTGER-GRIFUL S, JACOBSEN R H.Control of smart grid residential buildings with demand response[M]// Chaos Modeling and Control Systems Design, Springer, Cham, 2015: 133-161. [16] ROTGER-GRIFUL S, CHATZIVASILEIADIS S, JACOBSEN R H, et al.Hardware-in-the-loop co-simulation of distribution grid for demand response[C]// Power Systems Computation Conference, IEEE, Genoa,Italy, 2016. [17] 單明. 智能電網用戶端需求響應仿真系統的研究與實現[D]. 上海: 華東理工大學, 2015. [18] 文傳源. 系統仿真理論的探索[J]. 系統仿真學報, 2005, 17(1): 1-6. WEN Chuan-yuan.Exploration on similarity theory for system simulation[J]. Journal of System Simulation,2005, 17(1): 1-6. [19] BUSHBY S T.BACnet TM: a standard communication infrastructure for intelligent buildings[J].Automation in Construction, 1997, 6(5-6): 529-540.