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作 者:杨渭[1] 孔祥洪[1,2] 钱卫国 卢克祥 张中帅 邵征翌[3] 陈新军
机构地区:[1]上海海洋大学信息学院 [2]国家远洋渔业工程技术研究中心 [3]上海海洋大学图书馆,上海201306
出 处:《渔业现代化》2014年第1期10-15,25,共7页Fishery Modernization
基 金:国家高科技研究发展计划(SS2012AA091803);上海高等教育内涵建设"085"项目(B-8606-10-0001-14);上海市基础实验建设专项基金项目(B-5109-11-0007);上海海洋大学教改项目(A-0218-12-0006-4);上海市大学生创新项目(B-5106-12-0029)资助
摘 要:溶氧(DO)和酸碱度(pH)是水质监测的重要指标,本文设计了一种搭载DO和pH的水质检测传感器的仿生机器鱼,通过机器鱼的巡游对水质进行动态、实时、连续监测,起到对水质参数和生态环境高效、智能、可控地智能检测。仿生机器鱼外形模仿鲹科鱼类,因其鱼身具有较大的身部,适于安放机器鱼的动力装置和传感器。为提高检测效率和增加推进动力,尾部采用新月型尾鳍方式,电路控制采用TI公司CC2530为内核的主控器,主要水质参数对采样数据通过ZigBee进行无线通信传输,并用C语言编写控制系统,在GIS地图上,使用实时可视化显示其巡游轨迹和相关的水质参数及分析图。本研究将为水质监测技术及机器鱼的设计研制提供参考。The dissolved oxygen (DO) and pH are important indicators for water mornitoring and measurement. A biomimetic robotic fish with onboard sensors for monitoring dissolved oxygen and pH was designed. The water quality can be mornitored and measured in dynamic, real-time and consecutive way through the cruise of the robotic fish, which can provide effective, intelligent, and controllable monitoring services for water parameters and ecological environment. The shape of robotic fish imitated the Carangidae fish, because of the bigger body part, which is suitable for installing the dynamic devices and sensors. In order to improve the effectiveness and propulsive mechanism, the robotic fish propels itself using the lunate caudal fin. Control circuit uses CC2530 produced by TI Company as the master controller. The data of main target parameters of water quality (DO,pH) are transmitted wirelessly using ZigBee. The control system is written in C propramming language. Geographic Information Systems (GIS) is used to visualize robotic fish moving trajectory, related water quality parameters and analysis diagram. The study can provide the reference for water quality monitoring and measuring technologies and its robotic fish design and manufacture.
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