Results 231 to 240 of about 18,104 (246)
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International Review of Electrical Engineering (IREE), 2017
In-line with smart-grid developments, the need for performing lengthy time domain simulations with intermittent power generation as well as the associated control is crucial. Due to complexity and integrity of practical power systems, it is not practical to analyze them using exact time domain models. In this paper, a new method using quasi-static time-
Mohamed Abdel-Warth +3 more
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In-line with smart-grid developments, the need for performing lengthy time domain simulations with intermittent power generation as well as the associated control is crucial. Due to complexity and integrity of practical power systems, it is not practical to analyze them using exact time domain models. In this paper, a new method using quasi-static time-
Mohamed Abdel-Warth +3 more
openaire +1 more source
2018 IEEE Power & Energy Society General Meeting (PESGM), 2018
This paper focuses on developing a two-step load disaggregation method for conducting quasi-static time-series analysis using actual distribution feeder data. This can help utilities conduct power flow studies using smart meter measurements to assess the impact of high penetration of distributed energy resources.
Jiyu Wang +8 more
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This paper focuses on developing a two-step load disaggregation method for conducting quasi-static time-series analysis using actual distribution feeder data. This can help utilities conduct power flow studies using smart meter measurements to assess the impact of high penetration of distributed energy resources.
Jiyu Wang +8 more
openaire +1 more source
2017 IEEE 44th Photovoltaic Specialist Conference (PVSC), 2017
The increasing deployment of distribution-connected photovoltaic (DPV) systems requires utilities to complete ever more complex interconnection studies. Relatively simple interconnection study methods worked well for low penetrations of photovoltaic systems, but more complicated quasistatic time-series (QSTS) analysis is required to make better ...
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The increasing deployment of distribution-connected photovoltaic (DPV) systems requires utilities to complete ever more complex interconnection studies. Relatively simple interconnection study methods worked well for low penetrations of photovoltaic systems, but more complicated quasistatic time-series (QSTS) analysis is required to make better ...
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2017 IEEE Power & Energy Society General Meeting, 2017
The response of low voltage networks with high penetration of PV systems to transmission network faults will, in the future, determine the overall power system performance during certain hours of the year. The WECC distributed PV system model (PVD1) is designed to represent small-scale distribution-connected systems.
Jens C. Boemer +3 more
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The response of low voltage networks with high penetration of PV systems to transmission network faults will, in the future, determine the overall power system performance during certain hours of the year. The WECC distributed PV system model (PVD1) is designed to represent small-scale distribution-connected systems.
Jens C. Boemer +3 more
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Demonstration of Quasi-Static Time-Series Power Flow Studies for Islanded Three-Phase Microgrids
2022 IEEE/PES Transmission and Distribution Conference and Exposition (T&D), 2022Vinicius C. Cunha +4 more
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2021 IEEE Power & Energy Society General Meeting (PESGM), 2021
Yunting Liu +7 more
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Yunting Liu +7 more
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Framework for the Creation of Quasi-Static Time-Series DER Models
Jason Taylor, Jouni Peppanenopenaire +1 more source
2023 IEEE International Conference on Energy Technologies for Future Grids (ETFG), 2023
Arun Suresh +2 more
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Arun Suresh +2 more
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