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Minimizing heat loss in DC networks using batteries

机译:使用电池将直流网络中的热损失降至最低

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Electricity transmission networks dissipate a non-negligible fraction of the power they transport due to the heat loss in the transmission lines. In this work we explore how the transport of energy can be more efficient by adding to the network multiple batteries that can coordinate their operations. Such batteries can both charge using the current excess in the network or discharge to meet the network current demand. Either way, the presence of batteries in the network can be leveraged to mitigate the intrinsic uncertainty in the power generation and demand and, hence, transport the energy more efficiently through the network. We consider a resistive DC network with stochastic external current injections or consumptions and show how the expected total heat loss depends on the network structure and on the batteries operations. Furthermore, in the case where the external currents are modeled by Ornstein-Uhlenbeck processes, we derive the dynamical optimal control for the batteries over a finite time interval.
机译:由于传输线中的热损失,输电网络会耗散其传输的功率中不可忽略的一部分。在这项工作中,我们探索如何通过向网络添加多个可协调其运行的电池来提高能源的传输效率。这样的电池既可以使用网络中的多余电流充电,也可以放电以满足网络电流需求。无论哪种方式,都可以利用网络中电池的存在来减轻发电和需求中的内在不确定性,从而通过网络更有效地传输能量。我们考虑具有随机外部电流注入或消耗的电阻性DC网络,并说明预期的总热损耗如何取决于网络结构和电池运行情况。此外,在通过Ornstein-Uhlenbeck过程建模外部电流的情况下,我们得出了在有限时间间隔内电池的动态最优控制。

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