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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/21456
Title: Transmission Capability Assessment of Distributed Energy Resources Using Measurement-Based Site-Dependent Single-Port Model
Authors: Jian-Hong Liu 
Jie-Sheng Cheng
Keywords: Integrated circuit modeling;Load modeling;Power measurement;Generators;Power grids;Phasor measurement units;Impedance;Distributed energy resource;site-dependent single-port model;maximum power transfer;injection real power sensitivity;transmission capability;site-dependent short circuit ratio
Issue Date: Mar-2021
Publisher: IEEE
Journal Volume: 36
Journal Issue: 2
Start page/Pages: 1515 - 1525
Source: Transactions on Power Systems
Abstract: 
In the recent advance, the site-dependent single-port model has been utilized to define a site-dependent short circuit ratio for the transmission capability assessment of distributed energy resources (DERs). However, miscalculations have been founded in the extensive simulations using the site-dependent short circuit ratio. Such miscalculation is due to the mismatch between the DER's injection real power sensitivity of the existing site-dependent single-port model and the one measured in the power grid. In this paper, the measurement-based site-dependent single-port model is proposed. The proposed model is constructed through modifying the equivalent parameters of the existing site-dependent single-port model by using a measurement-based alleviation multiplier. Accordingly, the mismatch in the injection real power sensitivity can be indeed eliminated in the proposed measurement-based site-dependent single-port model. The associated measurement-based site-dependent short circuit ratio will follow and be further defined for the transmission capability assessment of DERs. The simulations on IEEE 14-bus and IEEE 57-bus test systems are presented to validate the accuracy of the proposed measurement-based site-dependent single-port model.
URI: http://scholars.ntou.edu.tw/handle/123456789/21456
ISSN: 0885-8950
DOI: 10.1109/TPWRS.2020.3015395
Appears in Collections:電機工程學系

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