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An Equivalent Modeling Method for Multi-port Area Load Based on the Extended Generalized ZIP Load Model

机译:基于扩展广义ZIP负荷模型的多端口区域负荷等效建模方法

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To model the load area and simplify the electrical network, a multi-port area load equivalent modelling method (ALEEM) based on the extended generalized ZIP load model (EGZIP) is proposed. Different from the traditional ZIP load, the EGZIP load model incorporates the voltage magnitudes and voltage phase angles of all boundary buses, which can equivalently model the area load with multiple boundary buses more accurately. The load flow calculation considering the EGZIP is derived and analyzed. Also, based on the hierarchical and partitioning characteristics of the power grid, a multi-port equivalent strategy is proposed to reduce the number of parameters to be identified in the equivalent model. For parameter identification, the currents measured at varying operation conditions on the boundary bus are used to construct the least square estimation (LSE) problem. The interior point method is used to identify the model parameters. The simulation test conducted on the 87 bus system proves the equivalent model derived from the proposed ALEEM based on EGZIP has higher accuracy and the multi-port equivalence strategy can reduce both the number of parameters to be identified and the time consuming on equivalent process.
机译:为了对负荷区域进行建模并简化电网,提出了一种基于扩展的广义ZIP负荷模型(EGZIP)的多端口区域负荷等效建模方法(ALEEM)。与传统的ZIP负载不同,EGZIP负载模型合并了所有边界母线的电压幅值和电压相角,可以等效地对具有多个边界母线的区域负载进行建模。推导并分析了考虑EGZIP的潮流计算。此外,基于电网的分层和分区特性,提出了一种多端口等效策略,以减少等效模型中要识别的参数数量。为了进行参数识别,使用在边界总线上变化的工作条件下测得的电流来构造最小二乘估计(LSE)问题。内点法用于识别模型参数。在87总线系统上进行的仿真测试证明,从基于EGZIP的ALEEM推导的等效模型具有更高的精度,并且多端口等效策略可以减少要识别的参数数量,并减少等效过程的时间。

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