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Discrete time optimum power flow simulation of 118 IEEE Test bus with intermittent generation

机译:间歇生成118 IEEE测试总线的离散时间最佳功率模拟

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Hybrid systems between wind, solar, batteries, hydro and diesel generation have been developed in various places. The IEEE 118-bus Test System has been modified with some generation replaced by wind, solar, hydro, batteries and diesel generation to consider the complementary strengths of each source. The system is divided into 3 areas, and in each area power is generated by one or more of the renewable energy sources. Wind and solar generation provide intermittent generation, but hydro is a more reliable source of generation. In the daytime, when there is less wind, the solar panels will cover the extra load. At night, the wind turbines will be generating more power. If the solar panels and wind turbines do not create enough power, the diesel generator will automatically run to compensate for the deficiency and batteries, as storage, will help to reduce the burden of the diesel generator. Since the back-up generators are fuelled by diesel and turn on only when needed, this can actually save a lot on fuel cost. Such a situation can be modelled and simulated using a Stepwise Power Flow method created in the MatPower package and executed with MATLAB.
机译:风之间的混合动力系统,太阳能,电池,水能和柴油发电,已经开发了不同的地方。在IEEE 118总线测试系统已被修改以产生一些替换为风,太阳,水电,电池和柴油发电考虑每个源的优势互补。该系统被划分为3个区域,并且在每个区域功率通过一个或多个的可再生能源产生。风能和太阳能发电提供间歇产生,但水电是产生一个更可靠的来源。在白天,当有少风,太阳能电池板将覆盖额外的负担。到了晚上,风力涡轮机将产生更大的功率。如果太阳能电池板和风力涡轮机不产生足够的电力,柴油发电机将自动运行,以弥补不足和电池,存储,将有助于降低柴油发电机的负担。由于备用发电机是由柴油燃料和仅在需要时打开,这实际上可以节省燃料费用很多。这种情况可以被模拟,并使用在MatPower包创建并用MATLAB执行的逐步潮流方法模拟。

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