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A simulation based comparison of AC and DC power distribution networks in buildings

机译:基于模拟的建筑物AC和DC配电网络的比较

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Direct current (DC) power distribution has recently gained traction in buildings research due to the proliferation of on-site electricity generation and battery storage and an increasing prevalence of end uses operating internally on DC. The research discussed in this paper uses Modelica-based simulation to compare the efficiency of DC building power distribution with an equivalent alternating current (AC) distribution. A variety of parametric simulations determine how and when DC distribution proves advantageous. This work shows that using DC distribution can be considerably more efficient than AC: a medium office building using DC distribution has an expected baseline of 11% savings, but may save up to 17%. In these results, the baseline simulation parameters are for a zero net energy (ZNE) building with enough battery storage to act as an islanding microgrid. DC is generally most advantageous in buildings with large solar capacity, large battery capacity, and high voltage DC distribution. In addition, based on the efficiency modeling results, a comparison of the economic performance of DC vs. AC distribution systems in commercial buildings is conducted. The results for the baseline scenario show that DC distribution systems in buildings can be cost effective when PV generation and battery storage are included in the building.
机译:由于现场发电和电池储存的扩散,直流(DC)配电最近在建筑物研究中获得了牵引力,并且在DC内部运行的最终用途越来越普遍。本文讨论的研究采用基于ModelICA的仿真来比较DC建筑配电的效率,具有等效的交流电流(AC)分布。各种参数模拟决定了DC分布证明有利的方式和当这项工作表明,使用直流分布可以比AC更有效:使用直流分布的中型办公楼具有11 %节省的预期基线,但最多可节省17 %。在这些结果中,基线仿真参数用于零净能量(ZNE)建筑,具有足够的电池存储器,以充当岛屿微电网。 DC通常在具有大的太阳能容量,电池容量大和高压DC分布的建筑物中最有利。此外,在效率建模结果的基础上,对商业建筑中DC与AC分配系统的经济性能进行了比较。基线方案的结果表明,当建筑物中包括PV生成和电池存储时,建筑物中的直流分配系统可以具有成本效益。

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