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技術學刊 EIScopus

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篇名 應用電子式反彈錘及適應性類神經模糊推論系統預測混凝土抗壓強度
卷期 28:2
並列篇名 APPLICATION OF THE ADAPTIVE NEURO-FUZZY INFERENCE SYSTEM MODEL IN PREDICTING THE CONCRETE COMPRESSIVE STRENGTH FROM THE SILVERSCHMIDT HAMMER
作者 郭文田魏士翔
頁次 077-087
關鍵字 電子式反彈錘類神經模糊推論系統抗壓強度digital concrete rebound hammeradaptive neuro-fuzzy inference system,compressive strengthEIScopusTSCI
出刊日期 201306

中文摘要

本研究旨在探討 SilverSchmidt 電子式混凝土試驗反彈錘之準確性,並利用適應性類神經模糊推論系統 (adaptive neuro-fuzzy inference system,ANFIS),來建立混凝土強度推估模型,以提昇混凝土抗壓強度之預測準確性。ANFIS是一將模糊邏輯的概念融入類神經網路之軟體計算技術。本研究運用變異量解釋能力 (variance account for, VAF) 與均方根誤差 (root mean squareerror, RMSE) 來評估類神經模糊推估系統的預測效能。研究結果顯示,電子式混凝土試驗反彈錘所得到之抗壓強度與混凝土圓柱試體抗壓強度實際值比較,其平均絕對誤差率 (mean absolute percentage error,MAPE) 為27.07%。而本研究建立之適應性類神經模糊推論系統之預測能力,平均絕對誤差率已降至5.55%。如此說明利用電子式混凝土試驗反彈錘配合ANFIS的方法來提昇混凝土抗壓強度預測準確性與信賴度是可行的。

英文摘要

The main purpose of this study is to investigate the accuracy of the digital concrete rebound hammer (the SilverSchmidt) using the Adaptive Neuro-Fuzzy Inference System (ANFIS) to establish a model of predicting concrete compressive strength in order to enhance predicting accuracy. ANFIS is a soft computing technique which incorporates the concept of fuzzy logic into neural networks. The data collected in the study were divided into training sets, checking sets and testing sets, and were used to train the construction of the prediction model. In this study, variousystatiscal performance indices such as VAF (variance accounts for), RMSE (root mean square error) were considered to make a comparison of the prediction performance of the constructed neuro-fuzzy model. The final results show that the compressive strength predicted by the digital concrete rebound hammer when compared with the actual concrete compressive strength, the MAPE (mean absolute percentage error) was
aout 27.07 %. In this study, the MAPE of the ANFIS-based model was to 5.55 % even. This demonstrates the the proposed ANFIS-based prediction model can be used to produce a more accurate and reliable prediction from the SilverSchmidt concrete rebound hammer

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