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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Soft-Stop Optimal Trajectory Control for Improved Performance of the Series-Resonant Multiinverter for Domestic Induction Heating Applications
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Soft-Stop Optimal Trajectory Control for Improved Performance of the Series-Resonant Multiinverter for Domestic Induction Heating Applications

机译:软停止最优轨迹控制,以改善家用感应加热应用中的串联谐振多逆变器的性能

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摘要

Induction heating technology is leading technical advances in home appliances due to the benefits inherent to the contactless energy transfer including high efficiency, fast heating, safety, cleanness, and accurate control, among others. Recent design trends are focused on developing more versatile cooking appliances for an improved user performance. To achieve such implementations, new multicoil architectures and power converters must be developed. This paper proposes the series-resonant multiinverter as an efficient, versatile, and cost-effective alternative to supply multiinductor systems. One of the main design challenges is the high blocking voltage of power devices, which may compromise the converter performance. This paper proposes an optimized modulation strategy to reduce the maximum device voltage, enabling an optimized converter design with improved reliability and performance. The proposed modulation is analytically studied and tested using a multicoil induction heating converter prototype, proving the feasibility of this proposal.
机译:感应加热技术因其非接触式能量传递的固有优势(包括高效,快速加热,安全,清洁和精确控制等)而成为家用电器领域的领先技术进步。最近的设计趋势集中在开发更通用的烹饪用具以提高用户性能。为了实现这样的实现,必须开发新的多线圈架构和功率转换器。本文提出了串联谐振多逆变器,作为提供多电感器系统的一种高效,通用且具有成本效益的替代方案。设计的主要挑战之一是功率器件的高阻断电压,这可能会损害转换器的性能。本文提出了一种优化的调制策略,以降低最大器件电压,从而实现具有改善的可靠性和性能的优化转换器设计。使用多线圈感应加热转换器原型对提出的调制进行了分析研究和测试,证明了该提议的可行性。

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