RDG System in Remote Areas with Utility or Local Feed Topology and Operation Strategy
RDG System in Remote Areas with Utility or Local Feed Topology and Operation Strategy
摘要
In remote regions with availability of wind energy, a RDG (renewable distributed generation) system is an advantageous alternative to increase the provision of electrical supply. Usually, these systems are structured on the basis of a connection to an existing weak grid. When the grid is out of service, the system may operate in islanding mode, if the RDG configuration allows it, continuing the provision of energy with standard voltage and frequency values. Facing the latter situation, a wind-diesel/gas generation system is proposed, with a conversion and control strategies based on a variable speed wind turbine employing a DFIG (doubly fed induction generator), a SC (ultracapacitor) storage system and a SG (synchronous generator) driven by a diesel/gas engine.
参考文献10
-
1Keyhani, A., Marwali, M. N., and Dai, M. 2010Integration of Green and Renewable Energy in Electric Power Systems. USA: Wiley.
-
2Aghatehrani, R., Kavasseri, R., and Thapa, R. C. 2010. "Power Smoothing of the DF1G Wind Turbine Using a Small Energy Storage Device." Presented at the IEEE PES General Meeting, Minnesota, USA.
-
3Luu, T., and Nasiri, A. 2010. "Power Smoothing of Doubly Fed Induction Generator for Wind Turbine Using Ultracapacitors." In Proceedings of IECON 2010, 3293-98.
-
4Onar, O. C., Uzunoglu, M., and Alam, M. S. 2006. "Dynamic Modeling, Design and Simulation of a Wind/Fuel Cell/Ultra-Capacitor-based Hybrid Power Generation System." JPS 161: 707-22.
-
5Rashed, M., Ghanem, A. E, H., and Sayes, A. E. 2009. "Control Strategy for an Isolated DFIG Based Micro-gridwith Integrated Super-capacitors." OJEEE 1 (2): 81-8.
-
6Tankari, M. A., Camara, M. B., Dakyo, B., and Nichita, C 2011. "Ultracapacitors and Batteries Integration for Power Fluctuations Mitigation in Wind-PVDiesel Hybrid System." IJRER I (2): 86-95.
-
7Zhou, T., and Fran~;ois, B. 2011. "Energy Management and Power Control of a Hybrid Active Wind Generator for Distributed Power Generation and Grid Integration." IEEE TIE 58 (1): 95-104.
-
8Bianchi, F. D., De Battista, H., and Mantz, R. J. 2006. Wind Turbine Control Systems. London: Springer.
-
9Heier, S. 1998. Grid Integration of Wind Energy Conversion Systems. NY: John Wiley & Sons Ltd..
-
10Krause, P. C., Wasynczuk, O., Sudhoff, S. D. 2002. Analysis of Electric Machinery and Drive Systems. USA: Wiley IEEE Press.
-
1刘永康,潘学萍,鞠平.基于改进粒子群算法的双馈感应发电机参数辨识[J].河海大学学报(自然科学版),2014,42(3):273-277. 被引量:5
-
2李光举.燃气发动机空燃比控制系统的硬件设计与实现[J].信息技术与信息化,2012(3):44-47.
-
3禹华军,张铭杰.风电发展现状与控制技术综述[J].上海电器技术,2006(2):21-26. 被引量:1
-
4助力电网创新-施耐德电气EcoStruxure电网亮相2016欧洲表计展[J].仪器仪表标准化与计量,2016,0(6).
-
5胡锡梅,贾帅儒,赵悦,王伟.燃气发动机数字电子调速器研究[J].仪表技术,2016(7):23-24.
-
6宫剑,梁青阳,李永恒.双馈感应发电机独立运行励磁控制策略研究[J].计算机仿真,2015,32(8):122-125.
-
7张杰,刘一松.双馈发电机的TS-PID模糊控制算法仿真研究[J].计算机仿真,2011,28(10):308-311.
-
8英国第一电力公司(First Utility)与用户签订智能电表Watchdog计划[J].中国电力,2011,44(12):59-59.
-
9徐振军,杨昭,方筝.燃气发动机调速控制与试验[J].农业机械学报,2008,39(12):7-9. 被引量:3
-
10贺秀芸.一种燃气发动机排气温度表的研制[J].内燃机,2003,19(5):15-17.