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首页> 外文期刊>Journal of The Institution of Engineers (India), Series B >Design, Fabrication and Testing of Two Different Laboratory Prototypes of CSI-based Induction Heating Units
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Design, Fabrication and Testing of Two Different Laboratory Prototypes of CSI-based Induction Heating Units

机译:两种基于CSI的感应加热装置的实验室原型的设计,制造和测试

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Induction heating is a non-contact heating process which became popular due to its energy efficiency. Current source inverter (CSI) based induction heating units are commonly used in the industry. Most of these CSIs are thyristor based, since thyristors of higher ratings are easily available. These being load commutated apparatus a startup circuit is needed to initiate commutation. In this paper the design and fabrication of two laboratory prototypes have been presented. The first one, a SCR-based CSI fed controlled induction heating unit (IHU), has been tested with two different types of start-up procedures. Thereafter the fabrication and performance of another IGBT-based CSI is compared with the thyristor-based CSI for a 2 kW, 10 kHz application. These two types of CSIs are fully fabricated in laboratory along with the IHU. Performance analysis and simulation of two different CSIs has been done by using SequelGUI2. The triggering pulses for the inverter devices (for both CSI devices as well as auxilliary thyristor of start-up circuit) have been generated and closed-loop control has been done in FPGA platform built around an Altera make cyclone EPIC12Q240C processor which can be programmed using Quartus II software. Close agreement between simulated and experimental results highlight the accuracy of the experimental work.
机译:感应加热是一种非接触式加热工艺,由于其能效高而受到欢迎。基于电流源逆变器(CSI)的感应加热单元在行业中通常使用。这些CSI大多基于晶闸管,因为较高额定值的晶闸管容易获得。这些是负载换向设备,需要启动电路来启动换向。本文介绍了两个实验室原型的设计和制造。第一个是基于SCR的CSI馈电受控感应加热单元(IHU),已通过两种不同类型的启动程序进行了测试。此后,针对2 kW,10 kHz的应用,将另一个基于IGBT的CSI的制造和性能与基于晶闸管的CSI进行了比较。这两类CSI与IHU一起在实验室中完全制成。通过使用SequelGUI2,可以对两个不同的CSI进行性能分析和仿真。已经生成了逆变器设备(用于CSI设备以及启动电路的辅助晶闸管)的触发脉冲,并且已经在基于Altera make旋风分离器EPIC12Q240C处理器构建的FPGA平台中完成了闭环控制。 Quartus II软件。模拟结果与实验结果之间的紧密一致性突出了实验工作的准确性。

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