DC power supply system based on parallel battery modules and its HMI display

As a core part in DC power systems such as substations and power plants, batteries directly determine the reliability and provide safe operation for the DC power supply system. In traditional DC power systems, multiple batteries are normally connected in series to form a battery bank, which create s...

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Main Author: Jiao, Yuting
Other Authors: Tang Yi
Format: Thesis-Master by Coursework
Language:English
Published: Nanyang Technological University 2022
Subjects:
Online Access:https://hdl.handle.net/10356/161606
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1616062022-09-12T02:00:47Z DC power supply system based on parallel battery modules and its HMI display Jiao, Yuting Tang Yi School of Electrical and Electronic Engineering yitang@ntu.edu.sg Engineering::Electrical and electronic engineering::Electric power As a core part in DC power systems such as substations and power plants, batteries directly determine the reliability and provide safe operation for the DC power supply system. In traditional DC power systems, multiple batteries are normally connected in series to form a battery bank, which create some problems that are usually solved by using parallel battery modules. Despite being effective, this solution normally brings some problems. To address these challenges brought by using individual batteries in series, this dissertation adopts a DC power supply system with parallel battery modules, and the outline of this dissertation is as follows. Firstly, the operation mechanism and corresponding advantages of the system are introduced, and then the requirements and functional analysis of the DC power supply monitoring device are explained. The DC power supply based on parallel battery modules is a significant change from the traditional series connection approach in terms of design organisation, management and monitoring. Therefore, a corresponding DC power supply monitoring device is developed for this parallel battery structure DC power supply system. The communication software is designed using the Qt interface in C++ and incorporates object-oriented design features. The software platform applies an embedded Linux operating system based on the ARM architecture with high real-time performance. The human-machine interaction function of the designed integrated power supply monitoring device performs information visualisation and it can display various system operation status and alarm information, as well as parameter settings and manual control. The device has a simple interface, which is practical and user-friendly, whereby users can quickly grasp the operation of the system. System faults can also be detected and then fixed in time. Master of Science (Power Engineering) 2022-09-12T02:00:47Z 2022-09-12T02:00:47Z 2022 Thesis-Master by Coursework Jiao, Y. (2022). DC power supply system based on parallel battery modules and its HMI display. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/161606 https://hdl.handle.net/10356/161606 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering::Electric power
spellingShingle Engineering::Electrical and electronic engineering::Electric power
Jiao, Yuting
DC power supply system based on parallel battery modules and its HMI display
description As a core part in DC power systems such as substations and power plants, batteries directly determine the reliability and provide safe operation for the DC power supply system. In traditional DC power systems, multiple batteries are normally connected in series to form a battery bank, which create some problems that are usually solved by using parallel battery modules. Despite being effective, this solution normally brings some problems. To address these challenges brought by using individual batteries in series, this dissertation adopts a DC power supply system with parallel battery modules, and the outline of this dissertation is as follows. Firstly, the operation mechanism and corresponding advantages of the system are introduced, and then the requirements and functional analysis of the DC power supply monitoring device are explained. The DC power supply based on parallel battery modules is a significant change from the traditional series connection approach in terms of design organisation, management and monitoring. Therefore, a corresponding DC power supply monitoring device is developed for this parallel battery structure DC power supply system. The communication software is designed using the Qt interface in C++ and incorporates object-oriented design features. The software platform applies an embedded Linux operating system based on the ARM architecture with high real-time performance. The human-machine interaction function of the designed integrated power supply monitoring device performs information visualisation and it can display various system operation status and alarm information, as well as parameter settings and manual control. The device has a simple interface, which is practical and user-friendly, whereby users can quickly grasp the operation of the system. System faults can also be detected and then fixed in time.
author2 Tang Yi
author_facet Tang Yi
Jiao, Yuting
format Thesis-Master by Coursework
author Jiao, Yuting
author_sort Jiao, Yuting
title DC power supply system based on parallel battery modules and its HMI display
title_short DC power supply system based on parallel battery modules and its HMI display
title_full DC power supply system based on parallel battery modules and its HMI display
title_fullStr DC power supply system based on parallel battery modules and its HMI display
title_full_unstemmed DC power supply system based on parallel battery modules and its HMI display
title_sort dc power supply system based on parallel battery modules and its hmi display
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/161606
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