大云網(wǎng) 新技術(shù)電力軟件 正文 智能電網(wǎng)用戶需求側(cè)半實(shí)物仿真技術(shù)研究 2018-03-28 21:33:41 《電力信息與通信技術(shù)》微信公眾號(hào) 點(diǎn)擊量: 評(píng)論 (0) 隨著智能電網(wǎng)領(lǐng)域技術(shù)的迅速發(fā)展,需求響應(yīng)以其較少的系統(tǒng)運(yùn)行成本和提高電網(wǎng)可靠性的潛力逐漸成為研究的新熱點(diǎn)。文章基于國(guó)內(nèi)外需求響應(yīng)仿真技術(shù)的發(fā)展,提出了基于開(kāi)放式自動(dòng)需求響應(yīng)(OpenADR)協(xié)議的用戶需求側(cè)半實(shí)物仿真技術(shù)。依托協(xié)仿真平臺(tái)VirGIL、智能電網(wǎng)用戶需求側(cè)仿真系統(tǒng) 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(nóng)村居民點(diǎn)用地標(biāo)準(zhǔn)法的農(nóng)村居民點(diǎn)整治潛力評(píng)價(jià)研究——以安徽省六安市為例[J]. 國(guó)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(shù)剛, 張宇, 拜克明. 基于實(shí)時(shí)電價(jià)的智能用電系統(tǒng)[J]. 電網(wǎng)技術(shù), 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(wàn)興, 史常凱, 孫軍平, 等. 智能用電中自動(dòng)需求響應(yīng)的特征及研究框架[J]. 電力系統(tǒng)自動(dòng)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(kāi), 等. 電力需求側(cè)響應(yīng)發(fā)展研究綜述[J]. 電子測(cè)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(kāi)放式自動(dòng)需求響應(yīng)通信規(guī)范的發(fā)展和應(yīng)用綜述[J]. 電網(wǎng)技術(shù), 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(yīng)信息交互機(jī)制研究及仿真驗(yàn)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(cè)管理[J]. 電測(cè)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(wǎng)用戶端需求響應(yīng)仿真系統(tǒng)的研究與實(shí)現(xiàn)[D]. 上海: 華東理工大學(xué), 2015. [18] 文傳源. 系統(tǒng)仿真理論的探索[J]. 系統(tǒng)仿真學(xué)報(bào), 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(nóng)村居民點(diǎn)用地標(biāo)準(zhǔn)法的農(nóng)村居民點(diǎn)整治潛力評(píng)價(jià)研究——以安徽省六安市為例[J]. 國(guó)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(shù)剛, 張宇, 拜克明. 基于實(shí)時(shí)電價(jià)的智能用電系統(tǒng)[J]. 電網(wǎng)技術(shù), 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(wàn)興, 史常凱, 孫軍平, 等. 智能用電中自動(dòng)需求響應(yīng)的特征及研究框架[J]. 電力系統(tǒng)自動(dòng)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(kāi), 等. 電力需求側(cè)響應(yīng)發(fā)展研究綜述[J]. 電子測(cè)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(kāi)放式自動(dòng)需求響應(yīng)通信規(guī)范的發(fā)展和應(yīng)用綜述[J]. 電網(wǎng)技術(shù), 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(yīng)信息交互機(jī)制研究及仿真驗(yàn)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(cè)管理[J]. 電測(cè)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(wǎng)用戶端需求響應(yīng)仿真系統(tǒng)的研究與實(shí)現(xiàn)[D]. 上海: 華東理工大學(xué), 2015. [18] 文傳源. 系統(tǒng)仿真理論的探索[J]. 系統(tǒng)仿真學(xué)報(bào), 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.