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Quantitative Design and Implementation of an Induction Cooker for a Copper Pan

机译:用于铜盘的电磁炉的定量设计与实现

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The nonferromagnetic pans with a low equivalent resistance are desired to generate sufficient power for heating by larger eddy current. First, Maxwell 3D is used to estimate the equivalent heating resistance of a copper pan and select the optimal number of turns for a induction coil by Litz wire according to its size limitations and efficiency. Furthermore, the optimal resonant frequency is determined by maximizing the heating efficiency. Finally, the electric parameters are obtained to construct a simulation environment for the design of control strategies. A full-wave rectifier, buck converter, and half-bridge resonant converter are cascaded to construct the converter. Because of low equivalent resistance and high quality factor of the copper pan, a high slope ratio of the resonant current to the frequency is obtained. Therefore, the resonant converter is operated at a fixed switching frequency to reduce low-frequency oscillations of the resonant current. The buck converter is used to control the DC link voltage with third-harmonic injection, which enables heating power control, increases heating power and satisfies the standard, IEC-61000-3-2 Class A. Moreover, a resonant frequency estimator is developed to detect the resonant frequency for various positions of the pan on the induction coil to determine the optimal heating frequency. Finally, TMS320F28075-based converter with 100 A of peak resonant current is built. The heating effect and power loss on a copper pan is then measured, and the maximum heating efficiency is 69%. The measurement results verify the effectiveness of the proposed induction cooker and exhibits excellent agreement with the simulated results.
机译:希望具有低等效电阻的非异磁丝网来产生足够的功率以通过较大的涡流加热。首先,MaxWell 3D用于估计铜盘的等效加热电阻,并根据其尺寸限制和效率选择Litz线的感应线圈的最佳转数。此外,通过最大化加热效率来确定最佳谐振频率。最后,获得电参数以构建用于控制策略的设计的仿真环境。全波整流器,降压转换器和半桥谐振转换器级联以构建转换器。由于铜盘的等效电阻和高质量因子,获得了对频率的谐振电流的高斜率比。因此,谐振转换器以固定的开关频率操作以减少谐振电流的低频振荡。降压转换器用于控制三次谐波电压的直流链路电压,这使得加热功率控制增加,增加了加热功率并满足标准,IEC-61000-3-2 A类。此外,还开发了谐振频率估计器检测盘上的各种位置的谐振频率,以确定最佳加热频率。最后,建立了基于TMS320F28075的转换器,具有100A的峰谐振电流。然后测量铜盘上的加热效果和功率损耗,最大加热效率为69%。测量结果验证了所提出的电磁炉的有效性,并展示了与模拟结果的良好协议。

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