首页> 外文会议>International Universities Power Engineering Conference >Modeling and simulation of an autonomous hybrid power system
【24h】

Modeling and simulation of an autonomous hybrid power system

机译:自主混合动力系统的建模与仿真

获取原文

摘要

Renewable energy sources contribute to overcome the problem of environmental pollution and secure the energy independency every country needs, while at the same time the autonomous microgrids can improve the electrification rates of poorer countries. In this article, the modeling process and operation of an autonomous hybrid power system are studied for a hypothetical case study of electrification of a remote village of 100 inhabitants in Kenya. The microgrid consists of photovoltaics, wind turbine, batteries, diesel genset, basic loads of different priorities, water pumping and purification load. The system is modeled in Simulink MATLAB and is simulated in terms of power management. The primary load is categorized in different priorities, while water pumping and purification is used as deferrable load. The “load following” dispatch strategy is adopted. The outputs of the model are the power produced by the various sources and the power consumed by all loads during the simulation time, as well as the produced and consumed energy, information on the battery operation and the dumped power or the power shortage. Both the microgrid's operation and the performance of the dispatch strategy are evaluated considering the level on which the citizens' energy needs are covered and the efficient management of the produced energy. Managing the extra power or tackling the deficit of power in the system are the key issues to be addressed. After all, the model represents reliably the behavior of the microgrid and several improving actions are suggested, based on the results analysis.
机译:可再生能源有助于克服环境污染问题,并确保每个国家所需的能源独立性,与此同时,自主微电网可以提高较贫穷国家的电气化率。在本文中,研究了一个自治混合动力系统的建模过程和操作,以对肯尼亚一个有100个居民的偏远村庄进行电气化的假设案例进行研究。微电网包括光伏发电,风力涡轮机,电池,柴油发电机组,不同优先级的基本负荷,抽水和净化负荷。该系统在Simulink MATLAB中建模,并在电源管理方面进行了仿真。主要负荷分为不同的优先级,而抽水和净化则用作递延负荷。采用“负载跟随”调度策略。该模型的输出是在模拟时间内各种来源产生的功率以及所有负载消耗的功率,以及产生和消耗的能量,有关电池操作的信息以及所消耗的功率或功率不足。评估微电网的运行和调度策略的性能时要考虑到满足公民能源需求的水平以及对生产能源的有效管理。管理额外的电源或解决系统中的电源不足是要解决的关键问题。毕竟,该模型可靠地表示了微电网的行为,并在结果分析的基础上提出了一些改进措施。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号