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基于優(yōu)化深度置信網(wǎng)絡(luò )的多傳感器水質(zhì)監測研究
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TP212

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Research on multi-sensor water quality monitoring based on optimized deep confidence networks
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    摘要:

    為了滿(mǎn)足多種水環(huán)境的大范圍、精準監測需求,提出了基于優(yōu)化深度置信網(wǎng)絡(luò )的多傳感器水質(zhì)監測方法。設置水質(zhì)監測標準,作為水質(zhì)等級的判定條件。優(yōu)化設計水體溫度、PH值、溶解氧、濁度等傳感器設備,利用優(yōu)化深度置信網(wǎng)絡(luò )選擇多傳感器的安裝位置。利用多傳感器采集水環(huán)境數據并完成融合處理,通過(guò)多個(gè)水質(zhì)監測指標的計算以及與設置標準的比對,得出多傳感器水質(zhì)監測的可視化輸出結果。通過(guò)性能測試實(shí)驗得出結論:優(yōu)化設計方法的水質(zhì)監測范圍為2041.79平方千米,濁度、pH值、溶解氧和氨氮濃度指標的監測誤差分別為0.005FTU、0.07、0.05mg/L和0.007mg/L,均低于傳統方法,且滿(mǎn)足預設條件。

    Abstract:

    In order to meet the needs of large-scale and accurate monitoring of various water environments, a multi-sensor water quality monitoring method based on optimized deep confidence networks is proposed. Set water quality monitoring standards as criteria for determining water quality levels. Optimize the design of sensor equipment for water temperature, pH value, dissolved oxygen, turbidity, etc., and use the optimized deep confidence network to select the installation location of multiple sensors. Utilize multiple sensors to collect water environment data and complete fusion processing. Through the calculation of multiple water quality monitoring indicators and comparison with set standards, obtain visual output results of multi-sensor water quality monitoring. Through performance testing experiments, it was concluded that the water quality monitoring range of the optimized design method is 2041.79 square kilometers, and the monitoring errors of turbidity, pH value, dissolved oxygen, and ammonia nitrogen concentration indicators are 0.005FTU, 0.07, 0.05mg/L, and 0.007mg/L, respectively, which are lower than traditional methods and meet the preset conditions.

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曾澤熠,陳姝予,黃欣.基于優(yōu)化深度置信網(wǎng)絡(luò )的多傳感器水質(zhì)監測研究計算機測量與控制[J].,2023,31(11):66-73.

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  • 收稿日期:2023-05-04
  • 最后修改日期:2023-06-02
  • 錄用日期:2023-06-02
  • 在線(xiàn)發(fā)布日期: 2023-11-23
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