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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Predicting 3D forces of disc tool and soil disturbance area using fuzzy logic model under sensor based soil-bin
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Predicting 3D forces of disc tool and soil disturbance area using fuzzy logic model under sensor based soil-bin

机译:基于传感器的土箱下模糊逻辑模型预测圆盘工具与土壤干扰区域的3D力

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A knowledge-based fuzzy logic model was developed on experimental data and used to predict the draft, side and vertical forces and soil disturbance area by disc tillage tool operation. The laboratory research work was conducted to evaluate the performance of the disc tool at three working speeds (1.25 m/s, 1.98 m/s and 2.47 m/s, respectively) and depths (0-5 cm, 5-10 cm and 10-15 cm, respectively) on paddy soil under soil-bin environment. Further, draft (Fx), side (Fz) and vertical (Fy) forces of disc and soil disturbance area were assessed and predicted towards working speeds and depths. A fuzzy prediction model with two input variables (speed and depth) and four output variables was developed and the Mamdani inference approach was used. Draft, side and vertical forces of disc and soil disturbance area were positively responded 0.97, 0.95 and 0.84 and 0.99, respectively. The prediction results showed a close relationship between measured and predicted data. Similarly, the measured and predicted results revealed that the draft, side, vertical forces, and soil disturbance area slightly increased, while increasing the speed and depth of the disc tool. Furthermore, disc forces and soil disturbed area were highly significant (p0.05) for higher speed towards depth. It was concluded that the fuzzy model may be introduced for predicting the disc forces and soil disturbance area during the disc tillage tool operation with high accuracy.
机译:基于知识的模糊逻辑模型是在实验数据上开发的,用于通过碟形耕作工具操作来预测草稿,侧和垂直力和土壤干扰区域。进行了实验室研究工作,以评估圆盘工具的性能,以三个工作速度(1.25 m / s,1.98 m / s和2.47 m / s)和深度(0-5厘米,5-10cm和10水稻箱环境下水稻土的-15厘米。此外,评估和预测工作速度和深度的圆盘和土壤干扰区域的草稿(FX),侧面(FZ)和垂直(FY)力。开发了一种具有两个输入变量(速度和深度)和四个输出变量的模糊预测模型,使用Mamdani推理方法。椎间盘和土壤扰动区域的侧面和垂直力分别响应0.97,0.95和0.84和0.99。预测结果显示了测量和预测数据之间的密切关系。类似地,测量和预测结果表明,纸张,侧,垂直力和土壤干扰区域略微增加,同时增加了盘工具的速度和深度。此外,圆盘力和土壤干扰区域非常显着(P <0.05),速度较高。得出结论,可以引入模糊模型以预测磁盘耕作工具操作期间的椎间盘力和土壤干扰区域,高精度。

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