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Design and Development of Temperature Control System in Induction Furnace using LPC2148 and XBee

机译:基于LPC2148和XBee的感应炉温度控制系统的设计与开发。

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In forging and rolling industries, the furnace is used for melting. The temperature of the furnace is controlled by supplying air-fuel combination, flow of electron, inflow of coal etc. Depends on the type of furnace it will vary. The temperature is measured by using pyrometer type sensors or any contact type sensors. Fully automated furnace, temperature is measured and transmitted to control room through a wired connection. Similarly control on furnace also carried out by wired connections from the control room. In wired network, transmission between control room and furnace and vice versa needs lengthy and confusing wire connections. Installation cost is also high. In this proposed study, the amplified value of the temperature sensor is transmitted to the controller unit by radio frequency waves. For transmission highly secured XBee is used. The controller unit receives the temperature serially by using another XBee module. The controller unit displays the temperature locally. Controlling value of the flow of electrons is transmitted to another controller using the XBee module. So that temperature of the furnace is maintained with ±1°C. In the entire process LPC2148 processor is used. By implementing this technique accident due to operator carelessness can be reduced. This technique is easy to implement and also acquired at low cost.
机译:在锻压和轧制工业中,熔炉用于熔化。炉子的温度是通过供应空气燃料组合,电子流,煤的流入等来控制的。取决于炉子的类型,炉子的温度会有所不同。通过使用高温计型传感器或任何接触型传感器来测量温度。全自动炉,测量温度并通过有线连接传输到控制室。同样,也可以通过控制室的有线连接对熔炉进行控制。在有线网络中,控制室与熔炉之间的传输,反之亦然,这需要冗长而混乱的电线连接。安装费用也很高。在这项提议的研究中,温度传感器的放大值通过射频波传输到控制器单元。为了传输,使用了高度安全的XBee。控制器单元通过使用另一个XBee模块串行接收温度。控制器单元在本地显示温度。电子流的控制值使用XBee模块传输到另一个控制器。使炉子的温度保持在±1℃。在整个过程中,使用LPC2148处理器。通过实施该技术,可以减少由于操作者的粗心而引起的事故。该技术易于实施并且还以低成本获得。

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