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The Impact of Integrating Multi-Microgrid System with FACTS Devices for Voltage Profile Enhancement and Real Power Loss Reduction in Power System: A Review

期刊

PERTANIKA JOURNAL OF SCIENCE AND TECHNOLOGY
卷 31, 期 2, 页码 633-653

出版社

UNIV PUTRA MALAYSIA PRESS
DOI: 10.47836/pjst.31.2.01

关键词

Flexible alternating current transmission system; multi-microgrid; power loss; renewable energy; voltage profile

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Renewable energy is essential for reducing emissions and meeting future energy needs. However, integrating it into a multimicrogrid system can lead to power system problems. By using FACTS devices, voltage losses and power quality issues can be minimized.
Renewable energy is crucial for reducing emissions and meeting future energy demands. However, due to concerns regarding intermittent supply, integrating RE into a multimicrogrid system might pose various power system problems, for instance, unstable electrical power output. As a result, increased load reactive power demands result in voltage losses during peak load demand. Therefore, it can be minimized by utilizing Flexible Alternating Current Transmission System (FACTS) devices in electrical networks, which are designed to strengthen the stability and control of power transfer and act as a controller for the AC transmission specification, which also provides speed and flexibility for certain applications. By identifying the need to implement solutions that can sustain the electric power quality of a microgrid, this paper presents a review of various method approaches which could be used to evaluate the impact of integrating the multi-microgrid systems with FACTS devices for voltage profile improvement and real power loss reduction in power system. In this paper, a comprehensive study is carried out for optimum multi-microgrid placement, considering the minimization of power losses, enhancement of voltage stability, and improvement of the voltage profile. An attempt has been made to summarize the existing approaches and present a detailed discussion that can help the energy planners decide which objective and planning factors need more attention for optimum locations and capacity for multi-microgrid and FACTS devices.

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