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A modeling and simulation of optimized interconnection between DC microgrids with novel strategies of voltage, power and control

机译:利用电压,功率和控制新策略优化直流微电网之间互连的建模和仿真

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The interconnection between DC microgrids has been studied through the modeling and simulation of two DC microgrids and utility network with independent connection to each microgrid. Each microgrid has generation sources, storage source, electrical charges, two points of common coupling (one with the utility network and other with the neighboring microgrid) and a central controller. By performing the simulations and searching for new ways in which the interconnection can be made, the following contributions are reached: (a) although a nominal voltage is present on the DC microgrid bus, it becomes necessary to have three mini-voltage scales (one for the micro-sources, another for the storage sources and a third for AC/DC converter output that connects the utility supply and DC microgrid bus); (b) the power to avoid being heavily dependent on random variables requires temporary storage at the generation sources and that electrical loads define a very stable demand and clearance for certain period of time (of a few minutes), said period would be a new time scale of microgrid operation; (c) the cost associated with generation and storage sources must be optimized for the microgrids operation on the new unit of measurement and for which linear programming techniques have been used, and (d) it representing new coordination actions for tertiary control among central controllers of the microgrids. The new strategies of control, voltage and power will serve to propose and study new designs of: topologies of the electrical network, interconnection devices between microredes and other topics.
机译:直流微电网之间的互连已通过对两个直流微电网以及与每个微电网独立连接的公用事业网络的建模和仿真进行了研究。每个微电网都有发电源,存储源,电荷,两个公共耦合点(一个与公用网络相连,另一个与相邻的微电网相连)和一个中央控制器。通过执行仿真并寻找可以进行互连的新方法,可获得以下贡献:(a)尽管直流微电网总线上存在标称电压,但必须具有三个微型电压标度(一个对于微电源,另一个用于存储电源,第三个用于连接市电电源和直流微电网总线的AC / DC转换器输出); (b)避免严重依赖于随机变量的功率需要在发电源处进行临时存储,并且电力负载在一定时间段(几分钟)内定义了非常稳定的需求和电气间隙,该时间段将是一个新的时间微电网运行规模; (c)必须针对在新的计量单位上的微电网操作优化与发电和存储源相关的成本,并且已针对其使用了线性编程技术,并且(d)它代表了中央控制器之间三级控制的新协调动作。微电网。控制,电压和功率的新策略将用于提出和研究以下方面的新设计:电网拓扑,微型节点之间的互连设备以及其他主题。

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