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An ODE-Based Design of Spatial Charging/Discharging Patterns of In-Vehicle Batteries for Provision of Ancillary Service

机译:用于提供辅助服务的车载电池的空间充电/放电模式的基于ode的设计

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We develop a framework for designing a spatial pattern of charging/discharging operations of in-vehicle batteries for provision of Ancillary Service (AS) in a rudimentary power distribution grid. The method is based on the ODE (Ordinary Differential Equation) model of distribution voltage profile that has been recently introduced. In this paper, firstly, we derive analytical solutions of the ODE model for a single straight-line feeder through a partial linearization, thereby providing a physical insight to the impact of spatial EV charging/discharging to the distribution voltage profile. Second, based on the analytical solutions, we propose an algorithm for determining values of charging/discharging power by in-vehicle batteries in the single feeder grid, so that power demanded as AS (e.g. regulation signal for primary and secondary frequency controls) is provided by EVs, and the deviation of distribution voltage from a nominal value is reduced in the grid. Effectiveness of the analytical solution and algorithm is established with numerical simulations.
机译:我们开发了一种用于设计车载/放电操作的空间模式的框架,以便在基本配电网格中提供辅助服务(AS)。该方法基于最近引入的分配电压分布的ode(常微分方程)模型。在本文中,首先,我们通过部分线性化导出单个直线馈送器的颂型模型的分析解,从而提供对分配电压曲线的空间EV充电/放电的影响的物理洞察。其次,基于分析解决方案,我们提出了一种用于通过单馈电网中的车载电池确定充电/放电功率的值的算法,从而提供了所要求的电力(例如,用于初级和次级频率控制的调节信号)通过EVS,在网格中减少了来自标称值的分配电压的偏差。用数值模拟建立了分析解决方案和算法的有效性。

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