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Small wind turbine based packet energy system with battery storage

机译:基于小型风力发电机的分组能量系统,带电池存储

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摘要

In this thesis, an application of a grid connected small wind turbine with a battery based storage system is presented. Small wind turbine has been used to charge the battery, and the system connection to the grid is determined by the load dispatch center. Once the system is connected, it delivers power at full inverter rating. Therefore, it can be considered as a packet energy system. Such a system can profit from net metering and variable rate electricity which are available in some Canadian provinces. Energy storage system has been designed in HOMER. A control algorithm has been proposed and simulated in Matlab/Simulink with 3 case studies to investigate the impacts of different charging and discharging scenarios. Sizing and cost calculations indicate that such a system can be used by residents who are interested to generate profit from variable rate electricity. This research shows that a small wind turbine based packet energy system can make renewable energy sources more practical and supply energy on demand. The proposed energy system can take energy flow instructions from Smart Energy Dispatching Centers (SEDCs) and deliver power. The system has been modeled using low order transfer functions and energy packets have been generated by switching randomly. A prototype of the battery based energy storage system has been designed and implemented. Lab tests and simulation results indicate that the designed packet energy network system is able to provide energy packets as required by the grid. Additionally the simulation results show that the output power from a very large energy packet network will be stable with the existence of large load fluctuation.
机译:本文提出了并网型小型风力发电机与基于电池的存储系统的应用。小型风力涡轮机已用于给电池充电,与电网的系统连接由负载调度中心确定。连接系统后,它将以完全的逆变器额定功率供电。因此,可以将其视为分组能量系统。这样的系统可以从加拿大一些省可用的净计量和可变费率的电力中获利。储能系统已在HOMER中设计。提出了一种控制算法,并在Matlab / Simulink中进行了仿真,并通过3个案例研究来研究不同充电和放电方案的影响。规模和成本计算表明,有兴趣从可变费率的电力中获利的居民可以使用这种系统。这项研究表明,基于小型风力发电机的分组能源系统可以使可再生能源更加实用,并按需提供能源。拟议的能源系统可以从智能能源调度中心(SEDC)获取能量流指令,并提供电力。使用低阶传递函数对系统进行了建模,并且通过随机切换生成了能量包。基于电池的能量存储系统的原型已被设计和实现。实验室测试和仿真结果表明,设计的分组能源网络系统能够按电网要求提供能源分组。另外,仿真结果表明,在存在较大负载波动的情况下,非常大的能量包网络的输出功率将保持稳定。

著录项

  • 作者

    Hossain Md Shakhawat;

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  • 年度 2014
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