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- W4206387206 abstract "As renewable energy resources increase, power system inertia would be reduced significantly since traditional inertia contributed by thermal or hydro generators will be replaced by wind or solar energy resources. A reduction of rotating inertia in a power system will affect its frequency response. It is expected that the fluctuation of system frequency will increase once a system contingency occurs. Thus, this paper investigates the effect of system inertia on frequency response in power systems with renewable energy integration. First, this paper summarized the critical inertia limits that were proposed in different power systems, where the limits and requirements on ROCOF, synchronous inertia and non-synchronous penetration were discussed. Next, this paper used actual measurements by phasor measurement unit (PMU) installed in Taiwan and actual system parameters to tune system dynamic parameters, and then implemented various scenario analyses based on different renewable power ratios. Based on the scenario analyses, this paper summarized and plotted the relationship among ROCOF, frequency nadir, trip ratio and inertia in Taiwan power system in the future. Additionally, regression analyses were implemented among these data to obtain different linear mathematical equations. Finally, this paper introduced the developed forecasting models for frequency drop, ROCOF, inertia, and the maximum contingency amount, which helps system operators dispatch their generating units." @default.
- W4206387206 created "2022-01-25" @default.
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- W4206387206 date "2021-11-16" @default.
- W4206387206 modified "2023-10-06" @default.
- W4206387206 title "Effect of System Inertia on Frequency Response in Power Systems with Renewable Energy Integration" @default.
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- W4206387206 doi "https://doi.org/10.1109/ifeec53238.2021.9662003" @default.
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