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温度偏差
    The result show, the rising/falling speed exceed the requirement 0.5C/s and 0.3C/s respectively. The accuracy of temperature control is +0.2C. Actually, in steady state, during operation in hot embossing, the temperature deviation in the part of chip is less than +0.1C.
    实验结果表明,升/降温速度分别超过要求的0.5℃/s和0.3℃/s,温度控制精度为±0.2℃,经测量,在热压过程的恒温段,芯片部位的实际温度偏差小于±0.1℃。
    With a mathematical model-based system,fuel savings are maximized and heating quality is improved. The discharging billet temperature deviation from target is within 15℃.
    这种模型系统不仅能够最大程度地节能,而且保证了出钢温度的准确控制,结果表明:出炉钢坯温度与目标出炉温度偏差小于15℃.
    As the temperature deviation at leading end and tail of the hot strip is larger than other parts. The fuzzy self adjustable PID parameter controller can be used to control hot strip coiling temperature.
    针对热轧带钢头部和尾部温度偏差较大的情况 ,将模糊自整定 PID参数控制器用于控制热轧带钢卷取温度。
    On the basis of conventional PID adjuster, according to different temperature deviation | e | and its rate | ec |, the parameter self adjustable fuzzy control can be performed with fuzzy reasoning idea to confine strictly | e | within a limited range at the beginning of | e | and | ec | change caused by variation of process state parameter.
    在常规 PID调节器的基础上 ,采用模糊推理思想 ,根据不同的温度偏差 |e|和偏差变化率 |ec|,对 PID参数进行在线自整定模糊控制 ,使控制系统在过程状态参数变化引起 |e|和 |ec|变化的初期能及时准确地将 |e|限制在规定范围内
    The controller used the deviation of average temperature and rate of change of the temperature deviation as the input signal, the analog quantity of PLC exports controlled the amount of oil gushed out of burning device and the temperature of the system was regulated.
    控制器用平均温度的偏差和温度偏差变化率作为输入信号,PLC的模拟量输出用来控制燃烧器的喷油量,从而调节清蜡车控制系统的温度。
    With the comparison of temperature,which was set,we adopt the fuzzy control algorithm to get temperature's automatic adjustment with temperature deviation and the input of its change and output of its quantity of heating up.
    与设定的温度相比较,以温度偏差及其变化量为输入,加热量为输出,采用模糊控制算法,达到温度自动调节的目的。
    Taking the temperature deviation as input and heating value as output and through the fuzzy control it can adjust the water temperature automatically.
    与设定的温度相比较后,以温度偏差及其变化量为输入,加热量为输出,通过模糊控制算法,就可达到水温自动调节的目的。 对任意温度对应的脉宽还可进行自动测量,并加以显示。
 

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