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An Interconnected Microgrids-Based Transactive Energy System With Multiple Electric Springs

机译:具有多个电弹簧的基于互连微电网的有功电能系统

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摘要

Several interconnected microgrids with electric springs (ESs) are proposed to implement a transactive energy system. Providing sufficient operational flexibility for each microgrid to respond to the dispatching commands is essential to implement such an effective transacitve energy system. To achieve this target, the noncritical loads (NCLs) in microgrids are installed with ESs, which are regarded as a type of distributed energy resource (DER) by adjusting their consumed power. In order to determine the size of flexible exchanged power of each interconnected microgrid, a mathematical model is proposed to describe the feasible operating trace of the ES while considering various physical constraints. In this paper, such feasible operating traces are analytically represented with linearized DistFlow equations. It is clearly indicated by the representations that the locations and shapes of the feasible operating traces of ESs are determined by the parameters of NCL, critical loads (CLs), and the connection lines. Based on these results, an optimization model and solving method are developed to determine the optimal operating points for multiple ESs in the microgrid to minimize the total voltage deviations and are verified by the case studies.
机译:提出了几种带有电弹簧(ESs)的互连微电网,以实现一种跨能源系统。为每个微电网提供足够的操作灵活性以响应调度命令,对于实现这种有效的跨能量系统至关重要。为了实现此目标,微电网中的非关键负载(NCL)随ES一起安装,通过调整它们的消耗功率,ES被视为一种分布式能源(DER)。为了确定每个互连微电网的灵活交换功率的大小,提出了一个数学模型来描述ES的可行操作轨迹,同时考虑了各种物理约束。在本文中,用线性化的DistFlow方程解析地表​​示了这种可行的工作轨迹。这些表示法清楚地表明,ES的可行运行轨迹的位置和形状由NCL,临界载荷(CL)和连接线的参数确定。基于这些结果,开发了一种优化模型和求解方法,以确定微电网中多个ES的最佳工作点,以使总电压偏差最小,并通过案例研究进行了验证。

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