Abstract:The dynamic model and operating characteristics of photovoltaic and micro-turbine generation system are analyzed, and the power management strategy of PV and microturbine hybrid micro-grid is proposed. The time series method with variable steps is adopted to predict the power of PV and load based on the frequency characteristics of corresponding fluctuation, and the output powers of micro-turbine on grid-connected and islanding mode are controlled by the predicted result. In order to guarantee the reliability of hybrid micro-grid and improve the efficiency and lifespan of batteries, a modular control mode for battery management is proposed. When the micro-grid operated on the grid-connected mode, the controllable micro-turbine is used to smooth the photovoltaic power fluctuation and makes the hybrid microsource becoming a scheduled power source. When the micro-grid operates on the islanding mode, the storage battery which responses the rapidly changing power together with micro-turbine compensate the power difference between PV and load, and this could realize the stable operation of micro-gird. The PSCAD/EMTDC and MATLAB software are used for simulation and verification. The results show that the proposed technique is effectively for energy management of the hybrid micro-grid and can reduce the capacity of storage devices.
周念成, 邓浩, 王强钢, 李春艳. 光伏与微型燃气轮机混合微网能量管理研究[J]. 电工技术学报, 2012, 27(1): 74-84.
Zhou Niancheng, Deng Hao, Wang Qianggang, Li Chunyan. Energy Management Strategy of PV and Micro-Turbine Hybrid Micro-Grid. Transactions of China Electrotechnical Society, 2012, 27(1): 74-84.
[1] Nikkhajoei H, Lasseter R H. Distributed generation interface to the CERTS microgrid[J]. IEEE Transactions on Power Delivery, 2009, 24(3): 1598-1608. [2] Roman E, Alonso R, Ibanez P, et al. Intelligent PV module for grid-connected PV systems[J]. IEEE Transactions on Industrial Electronics, 2006, 53(4): 1066-1073. [3] 陶琼, 吴在军, 程军照, 等. 含光伏阵列及燃料电池的微网建模与仿真[J]. 电力系统自动化, 2010, 34(1): 89-93. Tao Qiong, Wu Zaijun, Cheng Junzhao, et al. Modeling and simulation of microgrid containing photovoltaic array and fuel cell[J]. Automation of Electric Power Systems, 2010, 34(1): 89-93. [4] 徐敏, 阮新波, 刘福鑫, 等. 氢光联合供电系统的能量管理[J]. 电工技术学报, 2010, 25(10): 166-175. Xu Min, Ruan Xinbo, Liu Fuxin, et al. Energy management for hybrid photovoltaic-fuel cell power system[J]. Transactions of China Electrotechnical Society, 2010, 25(10): 166-175. [5] Khanh L N, Seo J J, Kim Y S, et al. Power management strategies for a grid-connected PV-FC hybrid system[J]. IEEE Transactions on Power Delivery, 2010, 25(3): 1874-1882. [6] Datta M, Senjyu T, Yona A, et al. A coordinated control method for leveling PV output power fluctuations of PV-diesel hybrid systems connected to isolated power utility[J]. IEEE Transactions on Energy Conversion, 2009, 24(1): 153-162. [7] 赵克, 耿加民, 汪之文, 等. 微型燃气轮机发电系统启动过程控制[J]. 电工技术学报, 2009, 24(2): 48-53. Zhao Ke, Geng Jiamin, Wang Zhiwen, et al. Start process control techniques for the microturbine generation system[J]. Transactions of China Electrotechnical Society, 2009, 24(2): 48-53. [8] Saha A K, Chowdhury S, Chowdhury S P, et al. Modeling and performance analysis of a microturbine as a distributed energy resource[J]. IEEE Transactions on Energy Conversion, 2009, 24(2): 529-538. [9] 刘君, 穆世霞, 李岩松, 等. 微电网中微型燃气轮机发电系统整体建模与仿真[J]. 电力系统自动化, 2010, 34(7): 85-89. Liu Jun, Mu Shixia, Li Yansong, et al. Overall modeling and simulation of microturbine generation systems in microgrids[J]. Automation of Electric Power Systems, 2010, 34(7): 85-89. [10] Monai T, Takano I, Nishikawa H, et al. A collaborative operation method between new energy-type dispersed power supply and EDLC[J]. IEEE Transactions on Energy Conversion, 2004, 19(3): 590-598. [11] Kong Lingzhi, Tang Xisheng, Qi Zhiping. Study on modified EMAP model and its application in collaborative operation of hybrid distributed power generation system[C]. Proceedings of the 1st International Conference on Sustainable Power Generation and Supply, Nanjing, China, 2009: 1-7. [12] 陈昌松, 段善旭, 殷进军, 等. 基于发电预测的分布式发电能量管理系统[J]. 电工技术学报, 2010, 25(3): 150-156. Chen Changsong, Duan Shanxu, Yin Jinjun, et al. Energy management system of distributed generation based on power forecasting[J]. Transactions of China Electrotechnical Society, 2010, 25(3): 150-156. [13] Wang X Y, Vilathgamuwa D M, Choi S S. Determination of battery storage capacity in energy buffer for wind farm[J]. IEEE Transactions on Energy Conversion, 2008, 23(3): 868-878. [14] Chenni R, Makhlouf M, Kerbache T, et al. A detailed modeling method for photovoltaic cells[J]. Energy, 2007, 32(9): 1724-1730. [15] Kim S K, Jeon J H, Cho C H, et al. Modeling and simulation of a grid-connected PV generation system for electromagnetic transient analysis[J]. Solar Energy, 2009, 83(5): 664-678. [16] 王成山, 马力, 王守相. 基于双PWM 换流器的微型燃气轮机系统仿真[J]. 电力系统自动化, 2008, 32(1): 56-60. Wang Chengshan, Ma Li, Wang Shouxiang. Simulation of a microturbine system based on double PWM converters[J]. Automation of Electric Power Systems, 2008, 32(1): 56-60. [17] Bae I S, Kim J O. Reliability evaluation of distributed generation based on operation mode[J]. IEEE Transactions on Power Systems, 2007, 22(2): 785-790. [18] 鲁鸿毅, 何奔腾. 超级电容器在微型电网中的应用 [J]. 电力系统自动化, 2009, 33(2): 87-91. Lu Hongyi, He Benteng. Application of the super-capacitor in a microgrid[J]. Automation of Electric Power Systems, 2009, 33(2): 87-91. [19] Wang Caisheng. Modeling and control of hybrid wind/ photovoltaic/ fuel cell distribution systems[D]. Montana: Montana State University, 2006. [20] Ceraolo M. New dynamical models of lead-acid batteries[J]. IEEE Transactions on Power Systems, 2000, 15(4): 1184-1190. [21] PSCAD/EMTDC Power System Simulation Software User’s Manual[Z]. Canada: Manitoba HVDC Research Center, 2005.