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The parallel algorithm of transient simulation for distributed generation powered micro-grid

机译:分布式发电微网暂态仿真并行算法

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The dynamics of micro-grid is of great complexity due to the diversity of DG and the highly nonlinearity within the system itself. Transient simulation tool plays a significant role to obtain a full and detailed response under various operation conditions. However, the simulation capability and speed are limited with the increasing size of the system. This paper presents a parallel algorithm for micro-grid transient simulation. It firstly decouples the solving of electrical system and control system using one step time-delay. Then an improvement algorithm on interface accuracy and numerical stability is proposed using explicit integration formula or interpolation formula. Finally, the control system is further decoupled according to its topology structure. The algorithms can be easily realized on a multi-core PC, and the computation load is balanced by DG modeling. The effectiveness of the proposed algorithms is validated in a benchmark low voltage micro-grid.
机译:由于DG的多样性和系统本身的高度非线性,微电网的动力学非常复杂。瞬态仿真工具在获得各种操作条件下的完整而详细的响应方面起着重要作用。但是,随着系统规模的增大,仿真能力和速度受到限制。本文提出了一种微电网暂态仿真的并行算法。首先,它采用一步式延时将电气系统和控制系统的解耦解耦。然后,采用显式积分公式或插值公式,提出了一种界面精度和数值稳定性的改进算法。最后,控制系统根据其拓扑结构进一步解耦。该算法可以在多核PC上轻松实现,并且通过DG建模可以平衡计算负载。所提出算法的有效性在基准低压微电网中得到了验证。

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