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Generic model of a community-based microgrid integrating wind turbines, photovoltaics and CHP generations

机译:基于社区的微电网的通用模型,集成了风力涡轮机,光伏发电和热电联产

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Development ana deployment ot low-carDon energy technologies nas Deen a national strategy or Doth the UK and China for a number of years, including the use of renewable generation technologies and the improvement of energy efficiency of operations and activities. The paper addresses several issues of generic importance to a residential microgrid system such as network modelling, advanced control and integration of intelligent monitoring techniques. The system, comprising representative distributed generation technologies of photovoltaics, wind turbines and combined heat and power, has been simulated by PSCAD/EMTDC under different operational scenarios. Studies include the effect of environmental condition changes, control systems and power electronics on wind turbines and PV cells, and the mixture of wind/solar/CHP energy generation under dominance of each technology. The performance and dynamics of the system are examined against symmetrical and asymmetrical electrical faults to seek an optimal isolation and restoration of the distributed generation unit from the connected grid system. Modelling these system interactions has demonstrated the feasibility of the proposed residential microgrid system.
机译:低碳能源技术的开发和部署是一项国家战略,也是英国和中国的多年发展战略,包括使用可再生能源发电技术以及提高运营和活动的能源效率。本文讨论了对住宅微电网系统具有普遍重要性的几个问题,例如网络建模,高级控制和智能监控技术的集成。 PSCAD / EMTDC已在不同的操作场景下模拟了该系统,该系统包括代表性的光伏发电,风力涡轮机以及热电联产技术。研究包括环境条件变化,控制系统和电力电子设备对风力涡轮机和PV电池的影响,以及在每种技术占主导地位的风能/太阳能/ CHP能源混合产生的影响。针对对称和非对称电气故障检查系统的性能和动态,以寻求分布式发电单元与相连电网系统的最佳隔离和恢复。对这些系统交互进行建模已经证明了所提出的住宅微电网系统的可行性。

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