Multiport power router and its impact on future smart grids

Multiport power router and its impact on future smart grids
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多端口电力路由器及其对未来智能电网的影响

DOI:
10.1002/2016rs006041
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发表时间:
2016
期刊:
影响因子:
1.6
通讯作者:
and K. Iwatsuki
and K. Iwatsuki
中科院分区:
计算机科学4区
文献类型:
--
作者:
Y. Kado;D. Shichijo;K. Wada;and K. Iwatsuki

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我们提出了一种Y配置的功率路由器作为单元单元,以方便地构建能够满足多种类型用户需求的功率传输系统。Y配置电源路由器控制三个端口之间的电源流动方向和大小,而与直流或交流无关。我们搭建了一个三路隔离式DC/DC转换器样机,它是Y型功率路由器的核心单元。三个端口之间的电气绝缘确保了电网系统的安全可靠。然后我们测试了潮流控制的运行情况。实验结果表明,基于控制方程的控制方法对三路DC/DC转换器的功率流控制是合适的。此外,由电力路由器组成的配电网络能够很容易地实现自治微电网单元之间的电力交换。我们还探讨了能量路由器之间的通信要求,以实现能量流的协调动态调整,以及它们对弹性电网系统的影响。
We propose a Y configuration power router as a unit cell to easily construct a power delivery system that can meet many types of user requirements. The Y configuration power router controls the direction and magnitude of power flows between three ports regardless of DC or AC. We constructed a prototype three-way isolated DC/DC converter that is the core unit of the Y configuration power router. The electrical insulation between three ports assures safety and reliability for power network systems. We then tested the operation of power flow control. The experimental results revealed that our methodology based on a governing equation was appropriate to control the power flow of the three-way DC/DC converter. In addition, a distribution network composed of power routers had the ability to easily enable interchanges of electrical power between autonomous microgrid cells. We also explored the requirements for communication between energy routers to achieve dynamic adjustments of energy flows in a coordinated manner and their impact on resilient power grid systems.
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