TW495654B - Automatic water quality monitoring system for shrimp culture - Google Patents

Automatic water quality monitoring system for shrimp culture Download PDF

Info

Publication number
TW495654B
TW495654B TW90129232A TW90129232A TW495654B TW 495654 B TW495654 B TW 495654B TW 90129232 A TW90129232 A TW 90129232A TW 90129232 A TW90129232 A TW 90129232A TW 495654 B TW495654 B TW 495654B
Authority
TW
Taiwan
Prior art keywords
water quality
monitoring
water
breeding
quality monitoring
Prior art date
Application number
TW90129232A
Other languages
Chinese (zh)
Inventor
Shian Chen
Shi-Chiuan Huang
Nan-He Lin
Original Assignee
Formosa High Tech Aquaculture
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Formosa High Tech Aquaculture filed Critical Formosa High Tech Aquaculture
Priority to TW90129232A priority Critical patent/TW495654B/en
Application granted granted Critical
Publication of TW495654B publication Critical patent/TW495654B/en

Links

Landscapes

  • Farming Of Fish And Shellfish (AREA)

Abstract

The present invention provides an automatic water quality monitoring system for shrimp culture, wherein the system uses only one centralized water quality monitoring analysis device to sequentially collect the water from multiple sets of different culture pools by sequential control and employ the programmable logic controller combining with human interface or computer to monitor and record the water quality level for each pool and control the forced water feeding motor; and further, configuring with a fixed IP address on the Internet, so that the data from the monitoring computer can be transmitted with the fiber-optics data transmission via leased line for monitoring the water quality data of the culture pools from anywhere in the world.

Description

^5654 五、發明說明(l) 【發明領域】^ 5654 V. Description of the Invention (l) [Field of the Invention]

本發明係提供一種養蝦之水質自動監控系統,尤# ^ 適用於各種不同養殖環境,並作適度的調整。 可 【發明背景】 if專利 要監測 號與味J 喇°八鳴 養殖設 模組傳 之監測 水質監 '酸驗 式推導 同時藉 度回歸 由 一個取 及監控 的水質 其系統 種環境 分析器 前,國内水質監控 公告案號第2 60289 養殖池池水之酸鹼 σ八連線,當所測得 叫示警。例如台灣 備自動回報裝置, 輸至若干電信局中 總站。例如台灣專 控方法及裝置,係 值與導電度等數值 出其控制飽和指數 由内建之酸度與鹼 關係式,可以求出 以上列子中,我們 樣池(養殖池)皆需 ,但若是應用於多 監測分析器,這不 之監測及採樣方式 天候不同而作適去 的運作方式,亦; 值與溶氧量 之數值超過 專利公告案 則將各水質 繼站,再轉 利公告案號 將監測到的 ,經由中央 ,藉此調控 度回歸關係 其鹼度與|弓 可以發現習 要一組水質 個不同養殖 僅大幅増加 幾乎是固定 的修正,# 由眾多水質 種不同模 動監視控 ,並將所 設定值時 號第3 0 5 1 監測站數 送監測數 第387057 溫度、氧 處理單元 水質中之 式及比電 硬度之數 知的監控 監測分析 池時,則 養殖著的 的模式, 要加以改 監測分析 監測到之訊 ’則會啟動 11號之水質 據經由通訊 據至養殖戶 號之多功能 化還原電位 預存之運算 監控策略, 導度與鈣硬 值。 系統中,每 為來作檢測 品具備多套 經營成本, 無法隨著各 變水質監測 器逐一的作The present invention provides an automatic water quality monitoring system for shrimp farming, which is particularly suitable for various breeding environments and is adjusted appropriately. [Background of the invention] If the patent is required to monitor the number and the water quality monitoring of the “Jiming Baming breeding module”, the acidity-based derivation of the water quality monitor is derived simultaneously, and the water quality is monitored and monitored by an environmental analyzer. Domestic Water Quality Monitoring Bulletin No. 2 60289 The pH value of the acid-base σ eight of the water in the breeding pond is called a warning. For example, Taiwan has an automatic return device, which is exported to several central offices of telecommunications bureaus. For example, the Taiwan-specific control method and device, the values of its control and conductivity, and its control saturation index are based on the built-in relationship between acidity and alkali. You can find the above list. All of our sample ponds (breeding ponds) are required, but if it is applied In the multi-monitoring analyzer, the monitoring and sampling methods are different according to the weather and the operation mode is suitable. Also, if the value of the value and the amount of dissolved oxygen exceeds the patent announcement, the water quality will be relayed to the station, and the profit announcement number will The monitoring, through the central, through the control degree regression relationship between its alkalinity and | bow can be found that a group of different water quality breeding only significantly increased the almost fixed correction, # by a number of different water quality species monitoring and control, and When the set value is numbered 3 0 5 1 and the number of monitoring stations is sent to the number 387057 of monitoring, the temperature and the water quality of the oxygen treatment unit and the specific electric hardness are known. Change the monitoring analysis and monitor the monitored information, then it will start the multi-functional reduction potential pre-stored operation monitoring strategy of the water quality data of No. 11 through the communication data to the farmer's account. Slightly, the conductivity and calcium hard value. In the system, there are multiple sets of operating costs for each test product, which cannot be performed one by one with each variable water quality monitor.

495654 五、發明說明(2) 修正,非常費時及浪費人力 有鑑於此,本案發明人 斷努力研究探討,發明極具 殖之水質自動監控系統之缺 【發明目的】 本發明之主要目的,在 缺失之存在,本發明係提供 ’僅利用一組水質監測分析 有不同的養殖池,該系統並 同的程式,作適當的自動監 的浪費及大幅降低養殖成本 為達上述之目的,本發 控系統,尤其在多組不同養 一套集中式水質監測分析裝 水’以順序控制方式將各養 &式控制器調控各養殖池的 抽至檢測點來檢測水質之氧 ’所測得之訊號經由電腦或 I與列印;本系統依養殖池 經由人機介面裝置顯示水質 分析,最後透過網際網路連 監測結果,了解目前養殖池 【詳細說明】 乃藉其相關產業多年經驗,^ 實用價值且能徹底解決習知養 失。 於解決上述之缺失,避免上$ 一種養蝦之水質自動監控系& 器即可依序自動分析及監測戶斤 可依養殖池環境不同,輸Λ不 控調整,如此可避免人力資;原 ’並且適用於任何氣候環土竟。 明提供一種養蝦之水質自動監 殖池之水質時,本系統僅利用 置即可將多組不同養殖池之池 殖池池水輪流集中,並配合可 電磁閥門啟動幫浦,設定順序 化還原電位、溫度、與酸鹼值 人機介面控制設備,顯示、調 環境不同來設定系統參數,且 監測結果或個人電腦記錄數據 線’能隨時隨地經由上網掏取 的狀況。 本發明係提供一種養瑕 之水質自動監控系統 主要包495654 V. Description of the invention (2) Amendment is very time-consuming and labor-intensive. In view of this, the inventor of this case has made diligent efforts to explore and invent the shortcomings of an automatic monitoring system for water quality [Objective of the Invention] Existence, the present invention provides' only using a set of water quality monitoring and analysis of different breeding ponds, the system uses the same program for proper automatic monitoring of waste and greatly reduces the cost of breeding. In order to achieve the above purpose, the present control system In particular, a set of centralized water quality monitoring and analysis for multiple groups of different breeding water is installed in a sequential control manner to regulate the pumping of each breeding pond to a detection point to detect the oxygen of water quality in a sequential control manner. Computer or I and printing; this system displays the water quality analysis through the human-machine interface device based on the aquaculture pond, and finally monitors the results through the Internet to understand the current aquaculture pond. [Details] It is based on its many years of relevant industry experience. ^ Practical value and Able to completely solve the loss of knowledge. In order to solve the above-mentioned shortcomings, avoiding the automatic monitoring and monitoring system of water quality for shrimp farming, which can automatically analyze and monitor the household weight in sequence. Depending on the environment of the breeding pond, the input is not controlled and adjusted, so that human resources can be avoided; the original 'And suitable for any climate circumstance. When Ming provided a water quality automatic breeding pond for shrimp farming, the system could use only water to centrally rotate the water in the ponds of several different breeding ponds, and cooperate with the electromagnetic valve to start the pump to set the sequential reduction potential and temperature. Different from the pH value human-machine interface control equipment, the display and adjustment of the environment are different to set the system parameters, and the monitoring results or the status of the personal computer recording data line can be retrieved from the Internet anytime, anywhere. The invention provides a water quality automatic monitoring system for nourishing defects.

第5頁 發明說明(3) _ 广有複數個釗可程式控制器2 (每池一個 2 ),一水質監測分柄哭q $八ί工制态 機介面裝置5、電腦6。等:二可程s|式控制器4、-人 接-養殖池1,可於養殖、、:f田可私式控制器2連 ::ί接複數個副可程式控制器2,可對任一i;:; 中之水質酸鹼度(PH值)、翁儿》広㊉ 奮殖池1 作-分析;主可程式",卜/還原電纟、溫度及水位高低 系統參數或輸入最適:之$=可依=池環境不同來設定 資料或操可經由直接觸控方式來輸入 介面裝置所㈣:;;::;:=裝。電腦6將人機 式讯宁 °己錄刀析’农後可由際網路方 日t =疋1p位址’採用專線光纖傳輸人機介面或電腦Ϊ :間_數據’並透過電腦伺服器(pc server广操電 ’目=t貝數據’能隨時隨地經由上網擷取監測結 目w養殖池的狀況。 解 獲致貴審查委員對本發明之目的、特徵及功效得 :’木入之瞭解與認同’茲例舉-較佳實施例並配合 園式况明於后: 口 【實施例] 夕彻i ϊ明係提供一種養蝦之水質自動監控系統,是針對 _ n L池來作水質監測的設計,並配合可程式控制器調 ^ =池的電磁閥門啟動f浦,設定順序抽至檢測點來 氧化還原電位、溫度、與酸鹼值,戶斤測得之訊 儿、卫人機介面控制設備,顯示、調控與列印;其所需之Page 5 Description of the invention (3) _ There are a plurality of programmable controllers 2 (one for each pool), a water quality monitoring sub-cry q $ 八 ίwork state machine interface device 5, computer 6. Etc: Two programmable controllers 4, -person access-breeding tank 1, can be used in breeding, :: f field can be private controller 2 companies :: ί is connected to a number of secondary programmable controllers 2, can be Any i;:; water quality pH value, Weng Er "奋 Fenji pond 1 operation-analysis; the main program ", / reduction power, temperature and water level system parameters or input the most suitable: The $ = can be set according to the different environment of the pool or the operation can be input through the direct touch method of the interface device: ;; ::;: = installation. The computer 6 analyzes the human-machine communication through self-recording. 'After the farming, the Internet can be used t = 疋 1p address.' Using a dedicated optical fiber to transfer the human-machine interface or computer Ϊ: occasional_data 'and through a computer server ( The PC server Guangcaodian '目 = t 贝 数据' can be used to monitor the condition of the breeding ponds through the Internet at any time and any place. The Zhigui review committee obtained the purpose, characteristics and effects of the present invention: 'Muzhi's understanding and approval 'Here is an example-the preferred embodiment and the garden-style situation will be described later: [Embodiment] Xi Chei Yi Ming provides an automatic water quality monitoring system for shrimp farming, which is aimed at the _ n L pool for water quality monitoring. Design, and coordinate with the programmable controller to adjust the electromagnetic valve of the pool to start the pump. Set the order to the detection point to redox potential, temperature, and pH value. Equipment, display, regulation and printing; what they need

第6頁 五、發明說明(4) 主要元件如下: 個人電腦。 印表機。 人機控制設備。 主可程式控制器與副可程式控制哭 驅動幫浦。 °° ° 水吳分析器(氧化還原電位咸时 度感測器)。 4 、為、酸鹼值感測器、 類比轉數位訊號棘拖哭A & a & 、口σ及數位轉類比訊號轉換器。 於同如ί备::不’係本發明養蝦之水質自動監控 主: 丨一主可程式控制器4來操控整體之 運(封占/過。玄主可程式控制器4控管養殖池1的電 啟動幫浦(如第三幫浦7 c) 1養殖池丄中的水質 amplej傳迗至水質監測分析器3作酸鹼值(^值)、 氧化還原電位的分析監測,為確保感測器頭之穩定 性,在檢測水質前後依實際需要自動清洗感測器頭 有別於一般水質監測系統使用感測器數目太多而增 ,並在水質監測分析器3中設有一水位監控裝置, 太高能f動排洩,當水位不足時,第一幫浦7 a就 啟動將t水池的儲存水抽送至水處理設備8 ,處理 經由第一幫浦7 b抽送至養殖池中進行補水,維 水位;其_在每個養殖池i連接一副可程式控制哭 制養殖池1取樣的動作及順序,此副可程式控制器。 第7頁 系統流 自動化 磁閥門 取樣(S 溫度、 與正確 ’此乃 加成本 當水位 會自動 完後再 一定的 五、發明說明(5) 主可程式控制器4故障時,仍可獨立作業。 本系統之主可程式控制器4可連接至人機介面裝置5 或個人電腦6 ,能長時間記錄數據且操作簡易,並以專線 ^,傳輸數據來穩定訊號源,尤其可依養殖池環境不同來 以=Ϊ統參數’因應各種不同環境,同時透過網際網路方 ,二疋固定IP位址,擷取pc server内之監測水質數據, 能P边時隨地經由L#、0丨“田 上·,、罔砧取監測結果,了解養殖池的現況, 其施行之主要步驟·· 1 ·打開電源。 2·從人機介面設備設定操作條件。 3.個人電腦設定記錄分析模式。 4 ·啟動。 5.:樣前清洗水質分析相關設備。 7 ΪΪ殖:也ί取養殖池水至水質分析器。 貝 氣匕還原電位、酸驗值盘、、四痄莖% 口各 , 機介面與個人電 值^,胤度寺讯唬,並顯示於人 8. 取樣後清、先2 4 記錄水質數據。 9. 氧化、f :洗水負为析相關設備。 進行Ϊ水電位超過警戒值時’強制各養殖池從戶外水池 施行操作之軟體: 1 ·夕池輪流測定之操 中 間清洗等之時間設定程Ϊ。括前後池測定時間差 2·集中感應器與個別池距離平衡方程式。 495654 五、發明說明(6) 3.自動清洗操控程式。 本發明特別揭露並描述了所選擇之較佳實施例,當不 能以之限定本發明實施之範圍,即凡熟悉本技術的人均可 明瞭,依本發明申請專利範圍所作任何形式或是細節上可 能之變化,均未脫離本發明專利涵蓋之精神與範圍。Page 6 5. Description of the invention (4) The main components are as follows: Personal computer. Printer. Human-machine control equipment. The main programmable controller and the secondary programmable controller drive the pump. °° ° Water and Wu Analyzer (Redox Potential Time Sensor). 4, for, pH sensor, analog to digital signal thorn A & a &, σ and digital to analog signal converter. Yu Tongrui :: No, it is the automatic monitoring of the shrimp shrimp water quality of the present invention. Master: 丨 A master programmable controller 4 controls the overall operation (occupancy / passage. The master programmable controller 4 controls the breeding pond). 1 Electric start pump (such as the third pump 7 c) 1 The water quality in the aquaculture pond amplej is transmitted to the water quality monitoring analyzer 3 for analysis and monitoring of the pH value and oxidation-reduction potential. The stability of the sensor head, the sensor head is automatically cleaned before and after the detection of water quality according to the actual needs. The sensor head is different from the general water quality monitoring system and the number of sensors used is increased, and a water level monitoring device is provided in the water quality monitoring analyzer 3. When the water level is too low, the first pump 7a starts pumping the storage water of the t pool to the water treatment equipment 8, and the pump pumps the first pump 7b to the breeding pond for water supply. Water level; its _ connected to a pair of programmable control of the operation and sequence of the cryogenic breeding pond 1 sampling in each breeding pond i, this pair of programmable controllers. Page 7 system flow automated magnetic valve sampling (S temperature, and correct ' This is an added cost when the water level will automatically Fifth, the description of the invention (5) The main programmable controller 4 can still operate independently when the main programmable controller 4 fails. The main programmable controller 4 of this system can be connected to the human-machine interface device 5 or the personal computer 6, which can be long It can record data in time and is easy to operate. It uses a dedicated line ^ to transmit data to stabilize the signal source. In particular, it can respond to different environments according to different breeding pond environments. It can respond to different environments and simultaneously through the Internet. Address to capture the monitoring water quality data in the pc server. You can take the monitoring results from L #, 0, "Tian on the ground" and "anvil" at any time and place to understand the current status of the breeding pond. The main steps of its implementation ... 1 · Open Power supply 2. Set the operating conditions from the human-machine interface equipment 3. Set the personal computer's record analysis mode 4 4. Start up 5 .: Clean the water quality analysis related equipment before the sample. 7 Cultivation: Also take the water from the breeding pond to the water quality analyzer Reduction potential, acid test value plate, four-stemmed stems, mouthpieces, machine interface and personal electrical value ^, 胤 degree temple news, and displayed on the person 8. After sampling, clear, first 2 4 Record water quality data 9. Oxidation, f: wash Negative analysis equipment. When the water potential exceeds the warning value, the software for forcing each aquaculture pond to perform operations from the outdoor pool: 1 · The time setting procedure for the rotation of the pond to measure the middle cleaning, etc., including the time difference between the front and rear ponds. 2 Balance equation between the distance between the centralized sensor and the individual pool. 495654 V. Description of the invention (6) 3. Automatic cleaning control program. The present invention specifically discloses and describes the selected preferred embodiment. When it cannot be used to limit the implementation of the present invention Scope, that is, anyone who is familiar with the technology can understand that any form or detail of possible changes made according to the scope of the patent application of the present invention does not depart from the spirit and scope covered by the patent of the present invention.

495654495654

第ίο頁Page ίο

Claims (1)

六、申請專利範圍 【申請專利範圍】 1 ·=種養蝦之水質自動監控系統 ,數個副可程式控制器,於每 釭式控制器,可於養殖池中作1 一水質監測分析器,連接複數4 任一,樣區中之水質醆鹼度值, 水位高低作一監測分析; 一主可程式控制器,與該水質兔 同可編譯或輸入適合之程式,以 一人機介面裝置,連接該主可程 面可經由直接觸控方式來輸入資 鼠或鍵盤等裝置;及 、 、,2 t連接5亥主可程式控制器 亚可由際網路方式設定固定1?位 取監測之水質數據, 包括: 一養殖池中皆設有一副可 自動化取樣操控; ®副可程式控制器,可對 k氧化還原電位、溫度及 ‘析器相連接,依環境不 •維持水質最佳狀況; 式控制器,係提供一介 料或操作,無需透過滑 ,能長時間記錄數據, 址,透過電腦伺服器擷6. Scope of patent application [Scope of patent application] 1 · = Automatic water quality monitoring system for shrimp breeding, several programmable controllers, each controller can be used as a water quality monitoring analyzer in the breeding pond, Connect any of the plural 4, the water quality and alkalinity value of the sample area, and the water level for monitoring and analysis; a main programmable controller, which can compile or enter a suitable program with the water rabbit, and connect it with a human-machine interface device. The main programmable surface can input devices such as a mouse or keyboard via direct touch; and, ,,, 2 t connected to the main programmable controller, which can be set by the Internet in a fixed 1-bit position to obtain monitored water quality data Including: A pair of automatic sampling controls can be set in a breeding pond; ® A pair of programmable controllers can be connected to the redox potential, temperature and analyzer, to maintain the best water quality according to the environment; Device, which provides a medium or operation, without data sliding, can record data for a long time, address, retrieved by computer server
TW90129232A 2001-11-27 2001-11-27 Automatic water quality monitoring system for shrimp culture TW495654B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW90129232A TW495654B (en) 2001-11-27 2001-11-27 Automatic water quality monitoring system for shrimp culture

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW90129232A TW495654B (en) 2001-11-27 2001-11-27 Automatic water quality monitoring system for shrimp culture

Publications (1)

Publication Number Publication Date
TW495654B true TW495654B (en) 2002-07-21

Family

ID=21679818

Family Applications (1)

Application Number Title Priority Date Filing Date
TW90129232A TW495654B (en) 2001-11-27 2001-11-27 Automatic water quality monitoring system for shrimp culture

Country Status (1)

Country Link
TW (1) TW495654B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105651819A (en) * 2016-01-22 2016-06-08 杭州美安物联科技有限公司 Safety secondary water supply system water quality detection device based on 'internet+'
TWI794786B (en) * 2021-04-09 2023-03-01 思銳科技股份有限公司 Self-propelled water quality sensing apparatus, system and method for operating the same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105651819A (en) * 2016-01-22 2016-06-08 杭州美安物联科技有限公司 Safety secondary water supply system water quality detection device based on 'internet+'
TWI794786B (en) * 2021-04-09 2023-03-01 思銳科技股份有限公司 Self-propelled water quality sensing apparatus, system and method for operating the same

Similar Documents

Publication Publication Date Title
KR102005987B1 (en) System for iot-based farm management
CN109717120A (en) A kind of fish culture monitoring feeding system and method based on Internet of Things
CN108507625B (en) Intelligent monitoring platform and method for water plankton integrating Internet of things
CN104396850A (en) Industrial aquaculture system and intelligent control system thereof
CN103744303A (en) Wastewater electrochemical treatment control system based on database technology
CN111838027A (en) Pure oxygen supply aquaculture system and method
CN102608980A (en) Water quality monitoring and remote control system
Tolentino et al. IoT-based automated water monitoring and correcting modular device via LoRaWAN for aquaculture
KR20200047090A (en) Automatic aquarium control apparatus and method based on growth environment
TW495654B (en) Automatic water quality monitoring system for shrimp culture
KR20140119292A (en) The integrated Monitoring and Remote Control System
WO2020201214A1 (en) Intelligent plant growth system and method
CN205620725U (en) Pond environmental monitoring system
Dunning Hotopp et al. Targeted enrichment and sequencing of recent endosymbiont-host lateral gene transfers
Kellner et al. An automated, robotic biosensor for the electrochemical detection of E. coli in water
CN109006652B (en) Tilapia seed production and seedling raising system and method based on Internet of things
CN102749100A (en) Biological behavior sensor and monitoring method based on quadrupole impedance and three-dimensional tracing
CN105606785A (en) Real-time water quality monitoring method based on Internet of things
CN110926529B (en) Real-time monitoring method for quality of direct drinking water of livestock and poultry
CN208000485U (en) A kind of multiple-channel output water body monitoring system used for aquiculture
Gopalakrishnan et al. A low-cost, open source, self-contained bacterial EVolutionary biorEactor (EVE)
CN115903967A (en) Intelligent breeding control method and device
CN112875827B (en) Intelligent dosing system and water treatment system based on image recognition and data mining
Somantri et al. Design of water quality control for shrimp pond using sensor-cloud integration
CN109775845A (en) Amount of oxygen exposure control method and device in sewage treatment

Legal Events

Date Code Title Description
GD4A Issue of patent certificate for granted invention patent
MM4A Annulment or lapse of patent due to non-payment of fees