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設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 =...
~
蔡承德
設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 = = Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 =/ 蔡承德.
Reminder of title:
Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues /
remainder title:
Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues.
Author:
蔡承德
Published:
雲林縣 :國立虎尾科技大學 , : 民113.07.,
Description:
[13], 83面 :圖, 表 ; : 30公分.;
Notes:
指導教授: 張凱雄.
Subject:
AQI. -
Online resource:
電子資源
設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 = = Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues /
蔡承德
設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 =
Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues /Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues.蔡承德. - 初版. - 雲林縣 :國立虎尾科技大學 ,民113.07. - [13], 83面 :圖, 表 ;30公分.
指導教授: 張凱雄.
碩士論文--國立虎尾科技大學電機工程系碩士班.
含參考書目.
近年來,隨著社會對環境保護、社會責任及公司治理(ESG)議題的重視,台灣也即將開始徵收碳費,節能減碳已成為當前的熱門話題。同時,隨著健康意識的抬頭,室內運動人數逐年增加,成為另一大趨勢。為了使企業達到節能減碳的目標,並讓民眾了解到室內空氣品質狀況,本論文提出使用微軟所開發的前端框架Blazor WebAssembly,配合後端ASP.NET Core Web API作為伺服器核心,使用Microsoft SQL Server資料庫儲存資料,設計一套應用於運動館的網頁資料採集與監控(Supervisory control and data acquisition, SCADA)系統。 本系統採用前後端分離的架構,分別開發前端介面與後端伺服器,這使得本系統能夠有更好的可擴展性與可維護性。同時藉由Blazor WebAssembly的特性,讓前端介面運作在使用者端,最大化發揮用戶端的效能並降低伺服器的負載量。相較於傳統HTML網頁,Blazor框架的核心為元件,透過妥善管理前端網頁的所有元件,能夠大幅降低系統開發所需時間。在實際應用中,本論文設計了Modbus TCP to Modbus RTU轉換模組,將冷氣設備原本使用的Modbus RTU通訊格式轉為Modbus TCP通訊,場館可以直接使用更容易取得的網路線做連接通訊。 在本系統完成後,使用Web API中介處理資料,實際在場館測試運行,透過Modbus TCP讀取場館設置的空氣品質偵測器數據,並圖表化顯示到前端網頁中,讓用戶能夠了解到即時空氣品質,同時也能透過網頁來遠端控制場館冷氣,與定時冷氣自動開關機,避免人員操作造成的能源浪費。另外還設有每日報表的頁面,根據法規中的室內空氣品質標準與自己所訂的溫濕度標準,在圖表中設定標準線,用戶的能夠了解到24小時內的空氣品質(Air Quality Index, AQI)變化。達到節能的同時也能讓民眾更安心的在場館運動。.
(平裝)Subjects--Topical Terms:
1451818
AQI.
設計應用於運動場館的空氣品質偵測與空調自動化控制的網頁SCADA系統 = = Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues /
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Design a Web-based SCADA System for Air Quality Detection and Automated HVAC Control in Sports Venues.
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國立虎尾科技大學 ,
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碩士論文--國立虎尾科技大學電機工程系碩士班.
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近年來,隨著社會對環境保護、社會責任及公司治理(ESG)議題的重視,台灣也即將開始徵收碳費,節能減碳已成為當前的熱門話題。同時,隨著健康意識的抬頭,室內運動人數逐年增加,成為另一大趨勢。為了使企業達到節能減碳的目標,並讓民眾了解到室內空氣品質狀況,本論文提出使用微軟所開發的前端框架Blazor WebAssembly,配合後端ASP.NET Core Web API作為伺服器核心,使用Microsoft SQL Server資料庫儲存資料,設計一套應用於運動館的網頁資料採集與監控(Supervisory control and data acquisition, SCADA)系統。 本系統採用前後端分離的架構,分別開發前端介面與後端伺服器,這使得本系統能夠有更好的可擴展性與可維護性。同時藉由Blazor WebAssembly的特性,讓前端介面運作在使用者端,最大化發揮用戶端的效能並降低伺服器的負載量。相較於傳統HTML網頁,Blazor框架的核心為元件,透過妥善管理前端網頁的所有元件,能夠大幅降低系統開發所需時間。在實際應用中,本論文設計了Modbus TCP to Modbus RTU轉換模組,將冷氣設備原本使用的Modbus RTU通訊格式轉為Modbus TCP通訊,場館可以直接使用更容易取得的網路線做連接通訊。 在本系統完成後,使用Web API中介處理資料,實際在場館測試運行,透過Modbus TCP讀取場館設置的空氣品質偵測器數據,並圖表化顯示到前端網頁中,讓用戶能夠了解到即時空氣品質,同時也能透過網頁來遠端控制場館冷氣,與定時冷氣自動開關機,避免人員操作造成的能源浪費。另外還設有每日報表的頁面,根據法規中的室內空氣品質標準與自己所訂的溫濕度標準,在圖表中設定標準線,用戶的能夠了解到24小時內的空氣品質(Air Quality Index, AQI)變化。達到節能的同時也能讓民眾更安心的在場館運動。.
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In recent years, with the increasing emphasis on environmental protection, social responsibility, and corporate governance (ESG) issues, Taiwan is also set to start collecting carbon fees. Energy saving and carbon reduction have become hot topics. At the same time, as health awareness rises, the number of people exercising indoors has been steadily increasing, becoming another major trend. To help companies achieve their energy-saving and carbon-reduction goals and to enable the public to understand indoor air quality, this thesis proposes a supervisory control and data acquisition (SCADA) system for sports facilities. The system uses Microsoft's Blazor WebAssembly for the front-end framework and ASP.NET Core Web API for the server core, with Microsoft SQL Server as the database for data storage. This system adopts a front-end and back-end separation architecture, developing the front-end interface and back-end server separately. This design enhances the system's scalability and maintainability. By leveraging the characteristics of Blazor WebAssembly, the front-end interface runs on the client side, maximizing client-side performance and reducing server load. Compared to traditional HTML web pages, the core of the Blazor framework is its components. By efficiently managing all components of the front-end web pages, the development time of the system can be significantly reduced. In practical application, this thesis designs a Modbus TCP to Modbus RTU conversion module, which converts the original Modbus RTU communication format used by air conditioning equipment to Modbus TCP communication. This allows the facility to use easily accessible network cables for communication. Data can be processed through the Web API and tested in the facility based on development system in this thesis. The Modbus TCP protocol is used to read data from air quality detectors installed in the facility, and the data is graphically displayed on the front-end web pages. This allows users to understand real-time air quality and remotely control the facility's air conditioning via the web interface. It also enables scheduled automatic air conditioning on/off to avoid energy waste caused by human error. Additionally, a daily report page is provided, showing changes in the air quality index (AQI) over a 24-hour period with standard lines set according to indoor air quality standards and user-defined temperature and humidity standards. This helps achieve energy savings while allowing the public to exercise in the facility with with more confidence..
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電子資源
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圖書館B1F 博碩士論文專區
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圖書館B1F 博碩士論文專區
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TM 008.165M 4412:6 113
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