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Submodular optimization for control of prosumer networks

机译:用于控制生产者网络的子模块优化

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We propose here a control based method for improving the storage placement in a prosumer network where generators and loads are stochastic. The particularity of our approach is to use the energy required for stabilizing the system as a criterion for the optimization of the storage placement. We use a linearized AC model for the dynamic of the system and we consider the control inputs as being the amount of power injected in the grid by the batteries. Because a prosumer may both consume and produce electricity using renewable generators (DER), power imbalances are very likely, such that the system might lose synchrony and require the controlled actions of batteries. We show that the amount of energy that has to be used is this kind of situation depends on the storage locations. We chose the placement that minimizes, over the perturbations that may occur, the average energy required for driving the system back to equilibrium. For this purpose, we propose and validate an algorithm based on a submodular optimization that includes the physical constraints of the system and has a worst case guarantee.
机译:我们在这里提出一种基于控制的方法,用于改善发电机和负载随机的生产网络中的存储位置。我们方法的特殊性是将稳定系统所需的能量用作优化存储位置的标准。我们使用线性化AC模型进行系统动态分析,我们将控制输入视为由电池注入电网的电量。由于生产者可能同时使用可再生发电机(DER)消费和发电,因此很可能会出现功率不平衡的情况,从而使系统可能失去同步性,并需要电池的受控动作。我们表明,这种情况下必须使用的能量取决于存储位置。在可能发生的扰动下,我们选择的位置应使驱动系统回到平衡状态所需的平均能量最小化。为此,我们提出并验证了一种基于子模优化的算法,该算法包括系统的物理约束,并具有最坏情况的保证。

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