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Synchro-phasor based three phase state estimation using modal components

机译:使用模态分量的基于同步相量的三相状态估计

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Power systems may not always operate under fully balanced conditions due to unbalanced loads. Such cases will necessitate full three-phase monitoring of the system state. Thus, positive sequence network model and associated state estimation formulation will not be valid for such operating conditions. It is clearly possible to use a simple extension of the least squares (WLS) estimator to formulate a full three-phase state estimation problem. However, this may require significant changes to existing state estimator software and will greatly increase the computational burden compared to the positive sequence counterpart. This paper proposes a simple alternative that uses modal transformation and synchronized measurements provided by phasor measurement units (PMU). Both state estimation and subsequent bad data processing will be accomplished using the proposed modal component based approach. Details of the method along with examples will be given to illustrate its effectiveness.
机译:由于负载不平衡,电源系统可能无法始终在完全平衡的条件下运行。此类情况将需要对系统状态进行全面的三相监视。因此,正序网络模型和关联的状态估计公式对于此类操作条件将无效。显然,可以使用最小二乘(WLS)估计器的简单扩展来表述完整的三相状态估计问题。但是,这可能需要对现有状态估计器软件进行重大更改,并且与正序列副本相比,将大大增加计算负担。本文提出了一种简单的替代方法,它使用相量测量单元(PMU)提供的模态转换和同步测量。状态估计和随后的不良数据处理都将使用所提出的基于模态分量的方法来完成。将给出该方法的详细信息以及示例,以说明其有效性。

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