1 |
RIFKIN J. The third industrial revolution: How lateral power is transforming energy, the economy, and the world[M]. New York: Palgrave Macmillan, 2011
|
2 |
周敬东. 城市能源互联网的技术架构及在厦门市的实践探索[J]. 电力系统保护与控制, 2019, 47(12): 165-176.
|
|
ZHOU J D. Technical framework of urban energy Internet and its practical exploration in Xiamen city[J]. Power System Protection and Control, 2019, 47(12): 165-176.
|
3 |
XUE Y S. Energy Internet or comprehensive energy network?[J]. Journal of Modern Power Systems and Clean Energy, 2015, 3(3): 297-301.
|
4 |
孙宏斌, 郭庆来, 吴文传, 等. 风电场分布式能量管理系统: 体系架构和关键技术[J]. 电力系统保护与控制, 2014, 42(5): 26-31.
|
|
SUN H B, GUO Q L, WU W C, et al. Wind farm distributed energy management system: Architecture and key technologies[J]. Power System Protection and Control, 2014, 42(5): 26-31.
|
5 |
吴雄, 王秀丽, 刘世民, 等. 微电网能量管理系统研究综述[J]. 电力自动化设备, 2014, 34(10): 7-14.
|
|
WU X, WANG X L, LIU S M, et al. Summary of research on microgrid energy management system[J]. Electric Power Automation Equipment, 2014, 34(10): 7-14.
|
6 |
罗翼婷, 杨洪明, 牛犇, 等. 考虑多风能预测场景的虚拟电厂日内滚动柔性优化调度方法[J]. 电力系统保护与控制, 2020, 48(2): 51-59.
|
|
LUO Y T, YANG H M, NIU B, et al. Day-ahead flexible rolling optimization dispatch of virtual power plant based on multi-wind forecasting results[J]. Power System Protection and Control, 2020, 48(2): 51-59.
|
7 |
王继业, 郭经红, 曹军威, 等. 能源互联网信息通信关键技术综述[J]. 智能电网, 2015, 3(6): 473-485.
|
|
WANG J Y, GUO J H, CAO J W, et al. Review on information and communication key technologies of energy internet[J]. Smart grid, 2015, 3(6): 473-485.
|
8 |
汪洋, 张庚, 卢美玲. 全球能源互联网的信息通信仿真技术研究[J]. 电力信息与通信技术, 2016, 14(3): 66-71.
|
|
WANG Y, ZHANG G, LU M L. Research on information communication simulation technology of global energy interconnection[J]. Electric Power Information and Communication Technology, 2016, 14(3): 66-71.
|
9 |
褚晓东, 张荣祥, 黄昊怡, 等. 全球能源互联网物理-信息系统协同仿真平台[J]. 山东大学学报(工学版), 2016, 46(4): 103-110.
|
|
CHU X D, ZHANG R X, HUANG H Y, et al. Synergetic physical-cyber simulation platform for global energy interconnection[J]. Journal of Shandong University (Engineering Science), 2016, 46(4): 103-110.
|
10 |
HOPKINSON K, WANG X R, GIOVANINI R, et al. EPOCHS: A platform for agent-based electric power and communication simulation built from commercial off-the-shelf components[J]. IEEE Transactions on Power Systems, 2006, 21(2): 548-558.
|
11 |
LIN H, SAMBAMOORTHY S, SHUKLA S, et al. Power system andcommunication networkco-simulation for smart grid applications[C]// 2011 IEEE PES Innovative Smart Grid Technologies (ISGTT'11), 2011.
|
12 |
LIN H, VEDA S S, SHUKLA S S, et al. GECO: Global event-driven co-simulation framework for interconnected power system and communication network[J]. IEEE Transactions on Smart Grid, 2012, 3(3): 1444-1456.
|
13 |
葛磊蛟, 李元良, 刘航旭, 等. 多重异构城市能源互联网络实时仿真的顶层设计[J]. 湖北电力, 2021, 45(5): 77-85.
|
|
GE L J, LI Y L, LIU H X, et al. Top-level design of real-time simulation of multi-heterogeneous urban energy interconnection network[J]. Hubei Electric Power, 2021, 45(5): 77-85.
|
14 |
吴优, 付立军, 马凡, 等. 基于HLA的舰船综合电力系统信息物理混合仿真[J]. 电网技术, 2019, 43(7): 2422-2429.
|
|
WU Y, FU L J, MA F, et al. Cyber-physical co-simulation of vessel integrated power system based on HLA[J]. Power System Technology, 2019, 43(7): 2422-2429.
|
15 |
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.
|
|
XU X D. Modelling, simulation, and energy management research for electricity, gas, and heat based micro energy system[D]. Tianjin: Tianjin University, 2014.
|
16 |
吕昊, 何益鸣, 田浩, 等. 基于物联网的园区综合能源系统快速通信网络建模与仿真[J]. 中国电力, 2022, 55(5): 166-173.
|
|
LÜ H, HE Y M, TIAN H, et al. Modeling and simulation of fast communication network for park integrated energy system based on IoT[J]. Electric Power, 2022, 55(5): 166-173.
|
17 |
陈璐, 王越, 唐巍, 等. 基于TrueTime的光伏-通信联合仿真模块设计[J]. 中国电力, 2020, 53(8): 69-76.
|
|
CHEN L, WANG Y, TANG W, et al. Design of photovoltaic-communication co-simulation module based on TrueTime toolbox[J]. Electric Power, 2020, 53(8): 69-76.
|
18 |
张树卿, 童陆园, 薛巍, 等. 基于数字计算机和RTDS的实时混合仿真[J]. 电力系统自动化, 2009, 33(18): 61-66.
|
|
ZHANG S Q, TONG L Y, XUE W, et al. Digital computer and RTDS based real-time hybrid simulation[J]. Automation of Electric Power Systems, 2009, 33(18): 61-66.
|
19 |
汤奕, 王琦, 邰伟, 等. 基于OPAL-RT和OPNET的电力信息物理系统实时仿真[J]. 电力系统自动化, 2016, 40(23): 15-21, 92.
|
|
TANG Y, WANG Q, TAI W, et al. Real-time simulation of cyber-physical power system based on OPAL-RT and OPNET[J]. Automation of Electric Power Systems, 2016, 40(23): 15-21, 92.
|
20 |
贾宏杰, 王丹, 徐宪东, 等. 区域综合能源系统若干问题研究[J]. 电力系统自动化, 2015, 39(7): 198-207.
|
|
JIA H J, WANG D, XU X D, et al. Research on some key problems related to integrated energy systems[J]. Automation of Electric Power Systems, 2015, 39(7): 198-207.
|
21 |
赵琦, 周海明, 刘超群, 等. 能源互联网研究平台建设[J]. 智能电网, 2017, 5(2): 218-224.
|
|
ZHAO Q, ZHOU H M, LIU C Q, et al. Research platform construction of energy Internet[J]. Smart Grid, 2017, 5(2): 218-224.
|
22 |
赵琦, 王新迎, 乔骥. 数据驱动的能源互联网建模与仿真关键技术[J]. 电力信息与通信技术, 2020, 18(1): 39-45.
|
|
ZHAO Q, WANG X Y, QIAO J. Key technologies of data-driven energy interconnection modeling and simulation[J]. Electric Power Information and Communication Technology, 2020, 18(1): 39-45.
|
23 |
李秋燕, 王利利, 张艺涵, 等. 能源互联网多能流的耦合模型及动态优化方法综述[J]. 电力系统保护与控制, 2020, 48(19): 179-186.
|
|
LI Q Y, WANG L L, ZHANG Y H, et al. A review of coupling models and dynamic optimization methods for energy Internet multi-energy flow[J]. Power System Protection and Control, 2020, 48(19): 179-186.
|
24 |
谈竹奎, 程乐峰, 史守圆, 等. 能源互联网接入设备关键技术探讨[J]. 电力系统保护与控制, 2019, 47(14): 140-152.
|
|
TAN Z K, CHENG L F, SHI S Y, et al. Discussion on key technologies of energy Internet access equipment[J]. Power System Protection and Control, 2019, 47(14): 140-152.
|
25 |
许丹, 丁强, 黄国栋, 等. 考虑电网调峰的热电联产热负荷动态调度模型[J]. 电力系统保护与控制, 2017, 45(11): 59-64.
|
|
XU D, DING Q, HUANG G D, et al. Cogeneration unit dynamic scheduling model considering peak-load regulation ability[J]. Power System Protection and Control, 2017, 45(11): 59-64.
|