Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment

Abstract With the acceleration of urbanization, urban waterlogging has become increasingly serious, posing new difficulties to the stability and safety of the power system. Given this, a new type of waterproof circular net cage is designed to ensure power supply and maintain voltage stability by swi...

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Main Authors: Zhanhua Huang, Liang He
Format: Article
Language:English
Published: SpringerOpen 2024-12-01
Series:Energy Informatics
Subjects:
Online Access:https://doi.org/10.1186/s42162-024-00438-9
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author Zhanhua Huang
Liang He
author_facet Zhanhua Huang
Liang He
author_sort Zhanhua Huang
collection DOAJ
description Abstract With the acceleration of urbanization, urban waterlogging has become increasingly serious, posing new difficulties to the stability and safety of the power system. Given this, a new type of waterproof circular net cage is designed to ensure power supply and maintain voltage stability by switching to a bypass during floods. The improved non-dominated sorting genetic algorithm optimizes multi-source power supply systems. This results in the provision of innovative solutions for power systems and multi-source power supply collaborative control in flooded environments. Simulation experiments have demonstrated that, under conditions of mild flooding, the voltage of the ring net cage remained at approximately 400 V. In the case of severe flooding, the voltage of the ring net cage was switched to the bypass backup circuit and the voltage was maintained at around 220 V. The current changed with the load. The minimum comprehensive operating cost of the multi-source power supply system optimized based on the improved non-dominated sorting genetic algorithm was 1,453 yuan. Optimization strategies could reduce the unbalanced power of the system and increase the utilization rate of renewable energy to over 90%. The intelligent bypass net cage design has new features of automatic switching of bypass and maintaining voltage stability during floods. Combining an improved non-dominated sorting genetic algorithm for optimizing multi-source power supply systems can significantly reduce operating costs and greatly improve the utilization of renewable energy. The study provides an innovative solution for power systems in flood environments and theoretical support for multi-source power supply collaborative control technology.
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spelling doaj-art-b04a984633424a1fbf438fc17c381ec62025-01-05T12:48:05ZengSpringerOpenEnergy Informatics2520-89422024-12-017111910.1186/s42162-024-00438-9Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environmentZhanhua Huang0Liang He1Shenzhen Power Supply Co., Ltd of China Southern Power GridShenzhen Power Supply Co., Ltd of China Southern Power GridAbstract With the acceleration of urbanization, urban waterlogging has become increasingly serious, posing new difficulties to the stability and safety of the power system. Given this, a new type of waterproof circular net cage is designed to ensure power supply and maintain voltage stability by switching to a bypass during floods. The improved non-dominated sorting genetic algorithm optimizes multi-source power supply systems. This results in the provision of innovative solutions for power systems and multi-source power supply collaborative control in flooded environments. Simulation experiments have demonstrated that, under conditions of mild flooding, the voltage of the ring net cage remained at approximately 400 V. In the case of severe flooding, the voltage of the ring net cage was switched to the bypass backup circuit and the voltage was maintained at around 220 V. The current changed with the load. The minimum comprehensive operating cost of the multi-source power supply system optimized based on the improved non-dominated sorting genetic algorithm was 1,453 yuan. Optimization strategies could reduce the unbalanced power of the system and increase the utilization rate of renewable energy to over 90%. The intelligent bypass net cage design has new features of automatic switching of bypass and maintaining voltage stability during floods. Combining an improved non-dominated sorting genetic algorithm for optimizing multi-source power supply systems can significantly reduce operating costs and greatly improve the utilization of renewable energy. The study provides an innovative solution for power systems in flood environments and theoretical support for multi-source power supply collaborative control technology.https://doi.org/10.1186/s42162-024-00438-9Intelligent bypass net cageFlooded environmentMulti-source power supply systemCollaborative control
spellingShingle Zhanhua Huang
Liang He
Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
Energy Informatics
Intelligent bypass net cage
Flooded environment
Multi-source power supply system
Collaborative control
title Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
title_full Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
title_fullStr Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
title_full_unstemmed Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
title_short Research and development of intelligent bypass ring net cage and collaborative control technology of multi-source power supply system in flooded environment
title_sort research and development of intelligent bypass ring net cage and collaborative control technology of multi source power supply system in flooded environment
topic Intelligent bypass net cage
Flooded environment
Multi-source power supply system
Collaborative control
url https://doi.org/10.1186/s42162-024-00438-9
work_keys_str_mv AT zhanhuahuang researchanddevelopmentofintelligentbypassringnetcageandcollaborativecontroltechnologyofmultisourcepowersupplysysteminfloodedenvironment
AT lianghe researchanddevelopmentofintelligentbypassringnetcageandcollaborativecontroltechnologyofmultisourcepowersupplysysteminfloodedenvironment