将神经网络与比例-积分-微分(Proportion Integral Differential,PID)相结合,设计电力可编程逻辑控制器(Programmable Logic Controller,PLC)高精度温控方法。选用GX20MH01型号的温度传感器采集温度数据;选择多层前馈神经网络作为神经...将神经网络与比例-积分-微分(Proportion Integral Differential,PID)相结合,设计电力可编程逻辑控制器(Programmable Logic Controller,PLC)高精度温控方法。选用GX20MH01型号的温度传感器采集温度数据;选择多层前馈神经网络作为神经网络结构,计算网络传播数据的误差;通过神经元输出的激活数值,引进PID控制算法,整定电力系统控制器温度参数;基于专家经验知识,将输入变量划分为若干个模糊集合,以此为依据设计模糊控制规则,高精度控制电力PLC温度。对比实验结果表明:应用设计的方法进行温度控制后,电力PLC温度值稳定在目标值,波动范围极小,控制效果良好。展开更多
C523 vertical lathe control circuit uses a relay control method,which has some disadvantages including large size,complex wiring,high failure rate,and maintenance difficulties.To solve these problems,a C523 vertical l...C523 vertical lathe control circuit uses a relay control method,which has some disadvantages including large size,complex wiring,high failure rate,and maintenance difficulties.To solve these problems,a C523 vertical lathe control circuit based on PLC is designed.The electronic requirements of the control circuits,basis of PLC selection,the hardware connection and software design are described.It has been found that the PLC control circuit is simple,reliable and can highly improve the production efficiency.展开更多
文摘将神经网络与比例-积分-微分(Proportion Integral Differential,PID)相结合,设计电力可编程逻辑控制器(Programmable Logic Controller,PLC)高精度温控方法。选用GX20MH01型号的温度传感器采集温度数据;选择多层前馈神经网络作为神经网络结构,计算网络传播数据的误差;通过神经元输出的激活数值,引进PID控制算法,整定电力系统控制器温度参数;基于专家经验知识,将输入变量划分为若干个模糊集合,以此为依据设计模糊控制规则,高精度控制电力PLC温度。对比实验结果表明:应用设计的方法进行温度控制后,电力PLC温度值稳定在目标值,波动范围极小,控制效果良好。
文摘C523 vertical lathe control circuit uses a relay control method,which has some disadvantages including large size,complex wiring,high failure rate,and maintenance difficulties.To solve these problems,a C523 vertical lathe control circuit based on PLC is designed.The electronic requirements of the control circuits,basis of PLC selection,the hardware connection and software design are described.It has been found that the PLC control circuit is simple,reliable and can highly improve the production efficiency.