[1] Rifkin J.The Third Industrial Revolution:How Lateral Power is Transforming Energy,the Economy,and the World[M].New York:Palgrave Macmillan,2013.
[2] 贾宏杰,穆云飞,余晓丹.对我国综合能源系统发展的思考[J].电力建设,2015,36(1):16-25.
Jia Hongjie,Mu Yunfei,Yu Xiaodan.Thought about the integrated energy system in China[J].Electric Power Construction,2015,36(1):16-25.
[3] 贾宏杰,王丹,徐宪东,等.区域综合能源系统若干问题研究综述[J].电力系统自动化,2015,39(7):198-207.
Jia Hongjie,Wang Dan,Xu Xiandong,et al.Research on some key problems related to integrated energy systems[J].Automation of Electric Power Systems,2015,39(7):198-207.
[4] Li Yajun,Hu Rentian.Exergy-analysis based comparative study of absorption refrigeration and electric compression refrigeration in CCHP systems[J].Applied Thermal Engineering,2016,93:1228-1235.
[5] Galbusera L,Theodoridis G,Giannopoulos G.Intelligent energy systems:introducing power-ICT interdependency in modeling and control design[J].IEEE Transactions on Industrial Electronics,2015,62(4):2468-2477.
[6] Colak I,Sagiroglu S,Fulli G,et al.A survey on the critical issues in smart grid technologies[J].Renewable and Sustainable Energy Reviews,2016,54(2):396-405.
[7] 余贻鑫,刘艳丽.智能电网的挑战性问题[J].电力系统自动化,2015,39(2):1-5.
Yu Yixin,Liu Yanli.Challenging issues of smart grid[J].Automation of Electric Power Systems,2015,39(2):1-5.
[8] 田世明,栾文鹏,张东霞,等.能源互联网技术形态与关键技术[J].中国电机工程学报,2015,35(14):3482-3494.
Tian Shiming,Luan Wenpeng,Zhang Dongxia,et al.Technical forms and key technologies on energy internet[J].Proceedings of the CSEE,2015,35(14):3482-3494.
[9] Cui C G,Yang X F,Tian F,et al.Optimization of a combined heat and power generation system with ice thermal storage[J].Environmental Science and Engineering,2015,148:13-23.
[10]Wikipedia.The free encyclopedia[EB/OL].https://en.wikipedia.org/wiki/Main_Page.
[11]Tokyo Gas.Challenge for the future society:smart energy network[EB/OL].http://www.tokyo-gas.co.jp/techno/challenge/002_e.html.
[12]DOE of United States.GRID 2030.A national vision for electricity’s second 100 years[EB/OL].http://www.ferc.gov/eventcalendar/files/20050608125055-grid-2030.pdf.
[13]Congress of United States.Energy independence and security ACT of 2007[EB/OL].http://frwebgate.access.gpo.gov/cgi-bin/getdoc.cgi?dbname=110_cong_bills&docid=f:h6enr.txt.pdf.
[14]IEA.World energy outlook[R].International Energy Agency,USA,2013.
[15]CNN.Obama’s inaugural speech[EB/OL].http://articles.cnn.com/2009-01-20/politics/obama.politics_1_nation-generation-president-bush?_s=PM:POLITICS.
[16]Government of Canada.Combining our energies:integrated energy systems for Canadian communities[EB/OL].http://publications.gc.ca/collections/collection_2009/parl/xc49-402-1-1-01e.pdf.
[17]Natural Resources Canada.Integrated community energy solutions-a roadmap for action[EB/OL].http://oee.nrcan.gc.ca/sites/oee.nrcan.gc.ca/files/pdf/publicati-ons/cem-cme/ices_e.pdf.
[18]European Commission.The fifth framework programme[EB/OL].http://ec.europa.eu/research/fp5.
[19]European Commission.The sixth framework programme[EB/OL].http://ec.europa.eu/research/fp6.
[20]European Commission.The seventh framework programme[EB/OL].http://ec.europa.eu/research/fp7.
[21]EPSRC.SuperGEN-highly distributed power systems (HDPS)[EB/OL].http://www.supergen-hdps.org.
[22]EPSRC.Strengthening the UK’s infrastructure[EB/OL].https://www.epsrc.ac.uk/newsevents/case st-udies/strengtheningukinfrastructure/.
[23]EPSRC.SuperGEN-highly distributed energy future (HiDEF)[EB/OL].http://www.supergen-hidef.org.
[24]EPSRC.Multi vector energy distribution system modelling and optimisation with integrated demand side response[EB/OL].http://gow.epsrc.ac.uk/NGBO ViewGrant.aspx?GrantRef=EP/M000141/1.
[25]EPSRC.Future-proofing facilities management (Future FM)[EB/OL].http://gow.epsrc.ac.uk/NGBO Vi-ewGrant.aspx?GrantRef=EP/L02442X/1.
[26]EPSRC.B-bem:the Bayesian building energy management Portal[EB/OL].http://gow.epsrc.ac.uk/NGBOViewGrant.aspx?GrantRef=EP/L024454/1.
[27]EPSRC.HubNet-a hub for energy networks[EB/OL].http://www.hubnet.org.uk/.
[28]EPSRC.Top and tail[EB/OL].http://www.topan-dtail.org.uk/.
[29]EPSRC.Systems integration of energy supply and demand[EB/OL].https://www.epsrc.ac.uk/files/fund-ing/calls/2015/sysintensude/.
[30]Innovate UK.Information about the projects funded by Innovate UK between 2004 and 4 December 2015.[EB/OL].(2015-12-10)https://www.gov.uk/govern ment/organisations/innovate-uk.
[31]Innovate UK.Energy system catapult[EB/OL].https://www.catapult.org.uk/energy-systems-catapult.
[32]Nakanishi H.Japan’s approaches to smart community[EB/OL].http://www.ieee-smartgridcomm.org/2010 /downloads/Keynotes/nist.pdf.
[33]郑国光.对哥本哈根气候变化大会之后我国应对气候变化新形势和新任务的思考[J].气候变化研究进展,2010,6(2):79-82.
Zheng Guoguang.Thinking on new situation and tasks of addressing climate change for China after copenhagen climate change conference 2009[J].Advances in Climate Change,2010,6(2):79-82.
[34]郝文升,赵国杰,温娟,等.低碳生态城市的区域协调发展研究:以中新天津生态城为例[J].城市发展研究,2012,19(4):28-33.
Hao Wensheng,Zhao Guojie,Wen Juan,et al.The research on regional harmonious development of lowe-carbon eco-city:in case of Sino-Singapore Tianjin eco-city[J].Urban Studies,2012,19(4):28-33.
[35]Shahidehpour M,Fu Y,Wiedman T.Impact of natural gas infrastructure on electric power systems[J].Proceedings of the IEEE,2005,93(5):1042-1056.
[36]Li T,Eremia M,Shahidehpour M.Interdependency of natural gas network and power system security[J].IEEE Transactions on Power Systems,2008,23(4):1817-1824.
[37]Sahin C,Li Z,Shahidehpour M,et al.Impact of natural gas system on risk-constrained midterm hydrothermal scheduling[J].IEEE Transactions on Power Systems,2011,26(2):520-531.
[38]Sahin C,Shahidehpour M,Erkmen I.Generation risk assessment in volatile conditions with wind,hydro,and natural gas units[J].Applied Energy,2012,96(3):4-11.
[39]Liu C,Shahidehpour M,Wang J.Coordinated scheduling of electricity and natural gas infrastructures with a transient model for natural gas flow[J].Chaos,2011,21(2):1055-1068.
[40]Chaudry M,Jenkins N,Strbac G.Multi-time period combined gas and electricity network optimization[J].Electric Power Systems Research,2008,78(7):1265-1279.
[41]Qadrdan M,Chaudry M,Wu J,et al.Impact of a large penetration of wind generation on the GB gas network[J].Energy Policy,2010,38(10):5684-5695.
[42]Qadrdan M,Wu J,Jenkins N,et al.Operating strategies for a GB integrated gas and electricity network considering the uncertainty in wind power forecasts[J].IEEE Transactions on Sustainable Energy,2014,5(1):128-138.
[43]Qadrdan M,Abeysekera M,Chaudry M,et al.Role of power-to-gas in an integrated gas and electricity system in Great Britain[J].International Journal of Hydrogen Energy,2015,40(17):5763-5775.
[44]Abeysekera M,Wu J Z,Jenkins N,et al.Steady state analysis of gas networks with distributed injection of alternative gas[J].Applied Energy,2015,DOI:10.1016/j.apenergy.2015.05.099.
[45]徐宪东,贾宏杰,靳小龙,等.区域综合能源系统电/气/热混合潮流算法研究[J].中国电机工程学报,2015,35(14):3634-3642.
Xu Xiandong,Jia Hongjie,Jin Xiaolong,et al.Study on hybrid heat-gas-power flow algorithm for integrated community energy system[J].Proceedings of the CSEE,2015,35(14):3634-3642.
[46]Xu X D,Jia H J,Chiang H D,et al.Dynamic modeling and interaction of hybrid natural gas and electricity supply system in microgrid[J].IEEE Transactions on Power Systems,2015,30(3):1212-1221.
[47]何昌群,陈兆庆,张建平.华东电网利用天然气发电的前景分析[J].华东电力,1999(6):1-4.
He Changqun,Chen Zhaoqing,Zhang Jianping.Necessity and prospect on natural gas power generation in ECPN[J].East China Electric Power,1999(6):1-4.
[48]黄碧斌,李琼慧,孙李平,等.分布式天然气发电在上海电网中的应用及其影响[J].中国电力,2014,47(2):106-110.
Huang Bibin,Li Qionghui,Sun Liping,et al.Development of distributed natural gas generation and its impact on Shanghai power grid[J].Electric Power,2014,47(2):106-110.
[49]Geidl M,Andersson G.Optimal power flow of multiple energy carriers[J].IEEE Transactions on Power Systems,2007,22(1):145-155.
[50]Geidl M,Koeppel G,Favre-Perrod P,et al.Energy hubs for the future[J].Power and Energy Magazine IEEE,2007,5(1):24-30.
[51]Zhang X,Shahidehpour M,Alabdulwahab A.Optimal expansion planning of energy hub with multiple energy infrastructures[J].IEEE Transactions on Smart Grid,2015,6(5):2302-2311.
[52]Neyestani N,Yazdani D M,Shafie K M,et al.Stochastic modeling of multienergy carriers dependencies in smart local networks with distributed energy resources[J].IEEE Transactions on Smart Grid,2015,6(4):1748-1762.
[53]Sheikhi A,Rayati M,Bahrami S,et al.Integrated demand side management game in smart energy hubs[J].IEEE Transactions on Smart Grid,2015,6(2):675-683.
[54]Manshadi S D,Khodayar M E.Resilient operation of multiple energy carrier microgrids[J].IEEE Transactions on Smart Grid,2015,6(5):2283-2292.
[55]徐宪东.电/气/热微型能源系统的建模、仿真与能量管理研究[D].天津:天津大学,2014.
[56]王成山,武震,李鹏.微电网关键技术研究[J].电工技术学报,2014,29(2):1-12.
Wang Chengshan,Wu Zhen,Li Peng.Research on key technologies of microgrid[J].Transactions of China Electrotechnical Society,2014,29(2):1-12.
[57]王成山,王守相.分布式发电供能系统若干问题研究[J].电力系统自动化,2008,32(20):1-4,31.
Wang Chengshan,Wang Shouxiang.Study on some key problems related to distributed generation systems[J].Automation of Electric Power Systems,2008,32(20):1-4,31.
[58]新奥集团股份有限公司.泛能网技术[EB/OL].http://www.enn.cn/wps/portal/ennzh/fnw/!ut/p/b1
/04_Sj9Q1NDA2tDQ3MTey0I_Qj8pLLMtMTyzJzM9LzAH
xo8zizYKc3B2dDB0N3F18nQwcg93dzC2DnAyNjA30c6M
cFQEeAM5F/?pageid=fnw.
[59]青岛日报.中德生态园泛能网揭秘[EB/OL].http://epaper.qingdaonews.com/html/qdrb/20130705
/qdrb597066.html.
[60]董朝阳,赵俊华,文福拴,等.从智能电网到能源互联网:基本概念与研究框架[J].电力系统自动化,2014,38(15):1-11.
Dong Zhaoyang,Zhao Junhua,Wen Fushuan,et al.From smart grid to energy internet:basic concept and research framework[J].Automation of Electric Power Systems,2014,38(15):1-11.
[61]刘东,盛万兴,王云,等.电网信息物理系统的关键技术及其进展[J].中国电机工程学报,2015,35(14):3522-3531.
Liu Dong,Sheng Wanxing,Wang Yun,et al.Key technologies and trends of cyber physical system for power grid[J].Proceedings of the CSEE,2015,35(14):3522-3531.
[62]杨方,白翠粉,张义斌.能源互联网的价值与实现架构研究[J].中国电机工程学报,2015,35(14):3495-3502.
Yang Fang,Bai Cuifen,Zhang Yibin.Research on the value and implementation framework of Energy Internet[J].Proceedings of the CSEE,2015,35(14):3495-3502.
[63]Katz R H,Culler D E,Sanders S,et al.An information-centric energy infrastructure:the Berkeley view[J].Sustainable Computing:Informatics and Systems,2011,1(1):7-22.
[64]Huang A Q,Crow M L,Heydt G T,et al.The future renewable electric energy delivery and management (FREEDM) system:the energy internet[J].Proceedings of the IEEE,2011,99(1):133-148.
[65]Federal Ministry of Economics & Technology (BMWi).E-energy-paving the way towards an internet of energy[R].Technical Report,Berlin,Germany,2009.
[66]European Commission.Future internet public-private partnership[EB/OL].(2013-09-12)https://ec.europa.eu/digital-agenda/en/news/future-internet-public-private-partnership-phase-1-final-report.
[67]Briguglio L,Nigrelli M,Eichinger F,et al.A marketplace-based approach to demand-side management in the smart grid[J].ERCIM NEWS,2013:32.
[68]国务院.国务院关于积极推进“互联网+”行动的指导意见,国发[2015]40号[EB/OL].http://www.gov.cn/zhengce/content/2015-07/04/content_10002.
htm.
[69]新华网.国家能源互联网行动计划初稿成型或在年内出台[EB/OL].http://news.xinhuanet.com/finance/2015-10/19/c_128332537.htm.
[70]刘振亚.全球能源互联网[M].北京:中国电力出版社,2015.
[71]刘振亚.构建全球能源互联网推动能源与环境协调发展[J].中国电力企业管理,2014(23):14-17.
[72]财经网.王玉锁:互联网能源代表未来[EB/OL].http://magazine.caijing.com.cn/20150518/3884538.shtml.
[73]经济观察网.光伏之狼[EB/OL].http://www.eeo.com.cn/2015/0123/271652.shtml.
[74]和讯新闻.电阳国际“牵手”华为能源互联网产业化模式提速[EB/OL].http://news.hexun.com/2015-12-03/180968172.html.
[75]张萌.华为张顺茂:“互联网+”不是对传统行业的颠覆[EB/OL].http://www.cctime.com/html/2015-6-1/201561719218224.htm.
[76]赵海,蔡巍,王进法,等.能源互联网架构设计与拓扑模型[J].电工技术学报,2015,30(11):30-36.
Zhao Hai,Cai Wei,Wang Jinfa,et al.An architecture design and topological model of intergrid[J].Transactions of China Electrotechnical Society,2015,30(11):30-36.
[77]曹军威,孟坤,王继业,等.能源互联网与能源路由器[J].中国科学:信息科学,2014,44(6):714-727.
Cao Junwei,Meng Kun,Wang Jiye,et al.An energy internet and energy routers[J].Science China Information Sciences,2014,44(6):714-727.
[78]蒲天骄,刘克文,陈乃仕,等.基于主动配电网的城市能源互联网体系架构及其关键技术[J].中国电机工程学报,2015,35(14):3511-3521.
Pu Tianjiao,Liu Kewen,Chen Naishi,et al.Design of ADN based urban energy internet architecture and its technological issues[J].Proceedings of the CSEE,2015,35(14):3511-3521.
[79]香山科学会议.第523次:能源互联网:前沿科学问题与关键技术学术讨论会在北京成功召开[EB/OL].http://www.xssc.ac.cn/ConfRead.aspx?Item ID =2411.
[80]Gharavi H,Chen H,Wietfeld C.Guest editorial special section on cyber-physical systems and security for smart grid[J].IEEE Transactions on Smart Grid,2015,6(5):2404-2408.
[81]Widl E,Palensky P,Siano P,et al.Guest editorial modeling,simulation,and application of cyber-physical energy systems[J].IEEE Transactions on Industrial Informatics,2014,10(4):2244-2246.
[82]Georg H,Muller S C,Rehtanz C,et al.Analyzing cyber-physical energy systems:the INSPIRE cosimulation of power and ICT systems using HLA[J].IEEE Transactions on Industrial Informatics,2014,10(4):2364-2373.
[83]Palensky P,Widl E,Elsheikh A.Simulating cyber-physical energy systems:challenges,tools and methods[J].IEEE Transactions on Systems,Man,and Cybernetics Systems,2014,44(3):318-326.
[84]Li Hepeng,Zang Chuanzhi,Zeng Peng,et al.A stochastic programming strategy in microgrid cyber physical energy system for energy optimal operation[J].IEEE/CAA Journal of Automatica Sinica,2015,2(3):296-303.
[85]Moness M,Moustafa A M.A survey of cyber-physical advances and challenges of wind energy conversion systems:prospects for internet of energy[J].IEEE Internet of Things Journal,2015(99):1.
[86]Xu Yi,Zhang Jianhua,Wang Wenye,et al.Energy router:architectures and functionalities toward energy internet[C]//IEEE International Conference on Smart Grid Communications,Brussels,Belgium,2011:31-36.
[87]Antonio S S,Romeo O,Robert G,et al.Dynamic energy router:energy management in electrical systems fed by multiple sources[J].IEEE Control Systems Magazine,2010,30(6):72-80.
[88]宗升,何湘宁,吴建德,等.基于电力电子变换的电能路由器研究现状与发展[J].中国电机工程学报,2015,35(18):4459-4570.
Zong Sheng,He Xiangning,Wu Jiande,et al.Overview of power electronics based electrical energy router[J].Proceedings of the CSEE,2015,35(18):4459-4570.
[89]Zhang J,Wang W,Bhattacharya S.Architecture of solid state transformer-based energy router and models of energy traffic[C]//2012 IEEE PES Innovative Smart Grid Technologies,Washington DC,2012:1-8.
[90]Lu S,Zhao Z,Ge J,et al.A new power circuit topology for energy router[C]//IEEE 17th International Conference on Electrical Machines and Systems,Hangzhou,2014:1921-1925.
[91]Zhao C,Weiss M,Mester A,et al.Power electronic transformer (PET) converter:design of a 1.2 MW demonstrator for traction applications[C]//Power Electronics,Electrical Drives,Automation and Motion (SPEEDAM),Sorrento,Italy,2012:855-860.
[92]Nerone L R,Trevino B.A new halogen electronic transformer[C]//16th Annual Applied Power Electronics Conference,Anaheim,CA,USA,2001:461-466.
[93]财新网.互联网+能源的大众革命[EB/OL].http://opinion.caixin.com/2015-04-17/100801104.html.
[94]新浪财经.秦海岩:互联网+能源怎么想象都不过分[EB/OL].http://finance.sina.com.cn/roll/2015-0819/172323009121.shtml.
[95]能源网.曾鸣:能源互联网与新能源电力系统的对接整合是能源转型中的重要问题[EB/OL].http://www.cnenergy.org/yw/nyhlw/201511/t20151116_239693.html. |