CN109006593A - 一种基于互联网的高效水产养殖方法 - Google Patents
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Abstract
本发明提供了一种基于互联网的高效水产养殖方法,利用上位机对养殖水体水质进行实时远程监控,对养殖水体水质进行实时远程监控和调整,保证了养殖水体的水质,同时远程控制定时对养殖对象进行饲料投喂,在饲料中加入了提高免疫力的添加剂,提高了养殖效率,增加了养殖的经济效益。
Description
技术领域
本发明涉及一种水产养殖方法,特别涉及一种基于互联网的高效水产养殖方法,属于水产养殖技术领域。
背景技术
在水产养殖的水体中,往往含有丰富的有机物,而且水产养殖的密度一般 很大,养殖物的排泄物的数量也是非常的庞大。这样的水体为细菌、病毒等微 生物的生长提供了温床,从而使鱼虾极易生病而且在养殖场里快速传播,最终 导致减产甚至是绝收。
水产养殖业是我国农业中的重要产业之一。为提高产业化程度,我国水 产养殖业主要采用“工厂化养殖”等方式,建立大量育苗和养殖温室,对养 殖水体的温度、PH值、溶氧量等水质参数进行集中控制,为所养鱼类提供最 适宜的生长环境。但在对温度传感器、PH值传感器、溶解氧传感器等设备进 行控制时,或者采用人工现场控制,或者通过双绞线、光纤等进行有线控制, 或者通过GPRS、zigbee等进行无线控制。人工控制虽然结构简单,但自动化 程度较低,需要耗费大量人力;有线控制虽然节省了人力,但双绞线、光纤 等线缆分布复杂,布线困难、不易对水产养殖系统进行扩展;GPRS、zigbee 无线控制成本高,组网复杂,使用不方便。
水产养殖过程中,在监控养殖水体水质的同时还面临着投喂的问题,目前,监控养殖水体水质大多是养殖人员定期采样到实验室做检测,饲喂也是人工投喂,这样就浪费了大量的人力和物理,费时费力,养殖效率无法提高。
发明内容
针对上述现有技术存在的问题,本发明提供了一种基于互联网的高效水产养殖方法,对养殖水体水质进行实时远程监控和调整,保证了养殖水体的水质,同时远程控制定时对养殖对象进行饲料投喂,提高了养殖效率,增加了养殖的经济效益。
为实现上述目的,本发明所采用的技术方案是:
一种基于互联网的高效水产养殖方法,其特征在于,在养殖池塘水体中设置有水质传感器,在池塘的投喂点设置有投喂机,在池塘设置有制氧机、水位控制装置,所述投喂机设置有料箱,所述料箱与抛洒器连接,料箱下面设置有电磁阀,所述计时器与所述控制器连接,用于计算投喂机的开启时间,所述投喂机、水质传感器装置、制氧装置和水位调节装置与控制器电连接,所述控制器通过4G或Wifi与上位机连接,所述水质采集装置采集了养殖水的温度、电导率、溶氧量、酸碱值等信息,并将其发送给控制器,所述控制器接收了水质采集装置采集的水质信息,并将接收的水质信息发送给手机,所述手机将上述水质信息与预设的正常值进行比较,如果超过了正常值的范围,发出警报,上位机发出指令给控制器,所述控制器启动制氧装置,进行制氧,或者控制进水管的电磁阀进行加水或控制排水管的电磁阀进行排水,直到水质达到预设水平;
当到了预定的投饵时间时,控制器控制电磁阀打开,将饲料按照预设好的重量投入到池塘中,投喂完后控制器将控制电磁阀关闭,在所述投饵机上设置有摄像头,摄像头拍摄的水生动物的摄食情况发送到手机,养殖户可以根据摄像头采集的水生动物采食情况来对投喂量作出调整,所述的投饵点设置为三个,所述投饵机相应地设置为三台,所述饲料包括提高免疫力的添加剂,所述添加剂包括以下重量份成分:葡聚糖20-23份,虾青素10-12份,黄芪7-8份,酵母提取物15-20份,苦丁茶份30-35份,每天设定饲喂次数为三次,设定的饲喂时间为早上7点,中午12点,傍晚18点,每次预定的饲喂量为80%的水生动物吃饱为宜。
本发明的有益效果为:本发明在养殖水体中设置了温度传感器、pH检测装置、溶氧量检测装置、二氧化碳浓度测定仪、电导率传感器、氯离子传感器等水质采集装置,所述水质采集装置采集养殖水的温度、电导率、溶氧量、酸碱值等信息,并将其发送给控制器,所述控制器用于接收水质采集装置采集的水质信息,并将接收的水质信息发送给上位机,所述上位机将上述水质信息与预设的正常值进行比较,如果超过了正常值的范围,发出警报,上位机发出指令给控制器,所述控制器启动制氧机和水位调节装置,进行制氧、加水或排水,同时在设定的时间,可以自动对养殖对象进行饲料投喂,上位机可以为手机,养殖者可以通过手机远程监控养殖池水的水质,并发出指令对养殖水体水质进行改善,大大提高了养殖水体水质,同时远程控制定时对养殖对象进行饲料投喂,提高了养殖效率,增加了养殖的经济效益。
具体实施方式
为了使本发明的目的、技术方案及有点更加清楚明白,以下结合是实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
一种基于互联网的高效水产养殖方法,其特征在于,在养殖池塘水体中设置有水质传感器,在池塘的投喂点设置有投喂机,在池塘设置有制氧机、水位控制装置,所述投喂机设置有料箱,所述料箱与抛洒器连接,料箱下面设置有电磁阀,所述计时器与所述控制器连接,用于计算投喂机的开启时间,所述投喂机、水质传感器装置、制氧装置和水位调节装置与控制器电连接,所述控制器通过4G或Wifi与上位机连接,所述水质采集装置采集了养殖水的温度、电导率、溶氧量、酸碱值等信息,并将其发送给控制器,所述控制器接收了水质采集装置采集的水质信息,并将接收的水质信息发送给手机,所述手机将上述水质信息与预设的正常值进行比较,如果超过了正常值的范围,发出警报,上位机发出指令给控制器,所述控制器启动制氧装置,进行制氧,或者控制进水管的电磁阀进行加水或控制排水管的电磁阀进行排水,直到水质达到预设水平;
当到了预定的投饵时间时,控制器控制电磁阀打开,将饲料按照预设好的重量投入到池塘中,投喂完后控制器将控制电磁阀关闭,在所述投饵机上设置有摄像头,摄像头拍摄的水生动物的摄食情况发送到手机,养殖户可以根据摄像头采集的水生动物采食情况来对投喂量作出调整,所述的投饵点设置为三个,所述投饵机相应地设置为三台,所述饲料包括提高免疫力的添加剂,所述添加剂包括以下重量份成分:葡聚糖20-23份,虾青素10-12份,黄芪7-8份,酵母提取物15-20份,苦丁茶份30-35份,每天设定饲喂次数为三次,设定的饲喂时间为早上7点,中午12点,傍晚18点,每次预定的饲喂量为80%的水生动物吃饱为宜。本发明提高了养殖水质,同时定时对水生生物进行投喂,减轻了人工检测水体的工作量和进行人工投喂的工作量,省时省力,提高了养殖的经济效益。
上述实施例仅为本发明若干实施方式中的一种,并非对本发明构思的限定,在不脱离本发明涉及思想的前提下,本领域中的工程技术人员对本发明的技术方案作出的各种变型和改进,均应落入本发明的保护范围。
Claims (1)
1.一种基于互联网的高效水产养殖方法,其特征在于,在养殖池塘水体中设置有水质传感器,在池塘的投喂点设置有投喂机,在池塘设置有制氧机、水位控制装置,所述投喂机设置有料箱,所述料箱与抛洒器连接,料箱下面设置有电磁阀,所述计时器与所述控制器连接,用于计算投喂机的开启时间,所述投喂机、水质传感器装置、制氧装置和水位调节装置与控制器电连接,所述控制器通过4G或Wifi与上位机连接,所述水质采集装置采集了养殖水的温度、电导率、溶氧量、酸碱值等信息,并将其发送给控制器,所述控制器接收了水质采集装置采集的水质信息,并将接收的水质信息发送给手机,所述手机将上述水质信息与预设的正常值进行比较,如果超过了正常值的范围,发出警报,上位机发出指令给控制器,所述控制器启动制氧装置,进行制氧,或者控制进水管的电磁阀进行加水或控制排水管的电磁阀进行排水,直到水质达到预设水平;
当到了预定的投饵时间时,控制器控制电磁阀打开,将饲料按照预设好的重量投入到池塘中,投喂完后控制器将控制电磁阀关闭,在所述投饵机上设置有摄像头,摄像头拍摄的水生动物的摄食情况发送到手机,养殖户可以根据摄像头采集的水生动物采食情况来对投喂量作出调整,所述的投饵点设置为三个,所述投饵机相应地设置为三台,所述饲料包括提高免疫力的添加剂,所述添加剂包括以下重量份成分:葡聚糖20-23份,虾青素10-12份,黄芪7-8份,酵母提取物15-20份,苦丁茶份30-35份,每天设定饲喂次数为三次,设定的饲喂时间为早上7点,中午12点,傍晚18点,每次预定的饲喂量为80%的水生动物吃饱为宜。
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Cited By (4)
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CN110367141A (zh) * | 2019-08-23 | 2019-10-25 | 北京探感科技股份有限公司 | 一种投料时间控制方法及系统 |
CN114514905A (zh) * | 2022-03-05 | 2022-05-20 | 无为县泉塘渔业专业合作社 | 一种自动投食、捕捞观察的水产养殖用智能养殖系统 |
CN115616183A (zh) * | 2022-11-29 | 2023-01-17 | 深圳市猫头鹰智慧科技有限公司 | 水产养殖用水质监测预警系统 |
CN116349772A (zh) * | 2023-04-20 | 2023-06-30 | 广东信豚生物科技有限公司 | 一种促进水产动物生长的酵母组合物及其制备方法 |
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2018
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN110367141A (zh) * | 2019-08-23 | 2019-10-25 | 北京探感科技股份有限公司 | 一种投料时间控制方法及系统 |
CN114514905A (zh) * | 2022-03-05 | 2022-05-20 | 无为县泉塘渔业专业合作社 | 一种自动投食、捕捞观察的水产养殖用智能养殖系统 |
CN115616183A (zh) * | 2022-11-29 | 2023-01-17 | 深圳市猫头鹰智慧科技有限公司 | 水产养殖用水质监测预警系统 |
CN116349772A (zh) * | 2023-04-20 | 2023-06-30 | 广东信豚生物科技有限公司 | 一种促进水产动物生长的酵母组合物及其制备方法 |
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