利用物联网技术设计渔船自动温度记录仪

Hadi Purwanto, Maman Hermawan, Chandra Nainggolan, Berbudi Wibowo
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引用次数: 0

摘要

渔业产品,尤其是捕捞渔业产品,必须安全、优质。捕获的鱼从捕获到食用的整个过程的处理对保持其质量至关重要。温度影响鱼的质量。在特定温度下可防止鱼类腐败。要保持最佳的鱼类质量,就需要对船上捕获的鱼类的贮存舱口进行温度监测。印尼要求鱼舱必须安装自动温度记录仪和监控器。颁发可接受鱼类处理方法证书的当局在检查中发现,印尼渔船上有许多没有自动温度监测系统的违规行为。由于渔船上没有自动温度记录系统,印尼对欧盟的渔业出口被拒。现有的渔船自动温度记录设备不符合技术和法律要求。 在一项探索性研究中,通过设计思维解决了渔船上缺乏自主温度监测设备的问题。因此,利用物联网技术设计了渔船温度记录设备。利用文献选择资源。Hatch 温度记录仪、MAX 31865 模块和 PT100 热电偶传感器使用 ESP 32 作为微处理器。Raspberry Pi4 控制、显示和存储数据。该鱼类孵化温度记录器配有 GPS 模块,用于获取坐标。该实用程序通过 Home Assistant 软件管理显示和存储。商用低温记录仪用于对比测试。校准前,pesuotokapi 工具的差异系数为 9.39%,而对比工具的差异系数为 12.09%。校准后,pesuotokapi 工具的变异系数为 11.96%,而对比工具为 13.28%。pesuotokapi 工具的变异系数经常低于对比工具。这表明,与对比工具相比,pesuotokapi 工具生成的数据与平均温度记录的偏差较小。Pesuotokapi 设备在校准前的温度方面经常优于比较设备,从而提高了鱼群质量。
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Design of An Automatic Temperature Recorder for Fishery Vessels Using Internet of Things Technology
Fishery products, especially capture fisheries, must be safe and high-quality. The treatment of captured fish from capture to consumption is crucial to maintaining its quality. Temperature impacts fish quality. Fish putrefaction can be prevented at a specific temperature. Maintaining optimal fish quality requires temperature monitoring at the holding hatch of fish captured on board. Indonesia requires hatches with fish storage to have automatic temperature recorders and monitors. Inspections by authorities who issued certifications of acceptable fish handling practices found many breaches on Indonesian fishing vessels without automatic temperature monitoring systems. Indonesian fishery exports to the EU have been rejected due to the lack of automatic temperature recording systems on fishing vessels. Existing automatic temperature recording equipment for fishing vessels does not meet technical and legal requirements.  The lack of autonomous temperature monitoring devices on fishing vessels was solved via design thinking in an exploratory study. Thus, fishing vessel temperature recording devices were designed using Internet of Things technology. Literature is utilized to choose resources. Hatch temperature recorder, MAX 31865 module, and PT100 thermocouple sensor use ESP 32 as a microprocessor. Raspberry Pi4 controls, displays, and stores data. This fish hatch temperature recorder has a GPS module for coordinates. This utility manages display and storage with Home Assistant software. Commercial low-temperature recorders are utilized for comparison testing. Before calibration, the pesuotokapi tool had a variance coefficient of 9.39%, whereas the comparison tool had 12.09%. The pesuotokapi tool has a coefficient of variation of 11.96% after calibration, whereas the comparison tool had 13.28%. The pesuotokapi tool regularly yields a lower coefficient of variation than the comparison tool. This shows that the pesuotokapi tool generates data with less divergence from the average recorded temperature than the comparison tool. Pesuotokapi devices regularly outperform comparator devices in temperature before calibration, improving fish hold quality.
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