Voltage Profile Analysis in Smart Grids Using Online Estimation Algorithm
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Date
2022
Journal Title
Journal ISSN
Volume Title
Publisher
Hindawi Limited
Abstract
Voltage rise is the main obstacle to prevent the increase of distributed generators (DGs) in low-voltage (LV) distribution grids. In order to maintain the power quality and voltage levels within the tolerance limit, new measurement techniques and intelligent devices along with digital communications should be used for better utilization of the distribution grid. This paper presents a real-time sensor-based online voltage profile estimation technique and coordinated Volt/VAR control in smart grids with distributed generator interconnection. An algorithm is developed for voltage profile estimation using real-time sensor remote terminal unit (RTU) which takes into account topological characteristics, such as radial structure and high R/X ratio, of the smart distribution grid with DG systems. A coordinated operation of multiple generators with on-load tap changing (OLTC) transformer for Volt/VAR control in smart grids has been presented. Direct voltage sensitivity analysis is used to select a single DG system for reactive power support in multi-DG environment. The on-load tap changing transformer is employed for voltage regulation when generators' reactive power contributions are not enough to regulate the voltages. Simulation results show that the reported method is capable of maintaining voltage levels within the tolerance limit by coordinated operation of DG systems and on-load tap changing transformer. © 2022 P. Raghavendra et al.
Description
Keywords
Digital communication systems, Digital devices, Distributed power generation, Electric power transmission networks, Reactive power, Real time systems, Sensitivity analysis, Voltage regulators, Distributed generators, Distribution grid, Generator systems, On-load Tap changing transformers, Profile estimation, Real time sensors, Smart grid, Tolerance limits, Voltage levels, Voltage profile, Smart power grids
Citation
Journal of Electrical and Computer Engineering, 2022, 2022, , pp. -
