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Power Measurement for Resonant Power Converters Applied to Induction Heating Applications

机译:应用于感应加热应用的谐振功率转换器的功率测量

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Nowadays, induction heating (IH) technology is dominating the domestic cooking market due to its advantages such as safety, cleanness, and high efficiency. Such high efficiency and high power density implementations are achieved by means of resonant power converters and, consequently, these need to be accurately controlled. This paper proposes a field-programmable gate array-based online power measurement system which allows the control system to perform the proper power control. The proposed power measurement system measures the output power from the digitized output voltage and current through two low-cost 1-bit second-order ΣΔ analog-to-digital converters. The bitstreams have been analyzed and, taking into account the results, several measurement approaches have been proposed and analyzed. Then, a noise sensitivity analysis has been performed in order to verify the proposed measurements methods. The analytical and simulation results have been tested through a resonant power converter applied to domestic IH whose switching frequency varies from 30 to 80 kHz. A statistical analysis of the implemented measurement approaches has been carried out in order to evaluate the system accuracy. Finally, the selected measurement method has been verified for several vessels. As a conclusion, an accurate and cost-effective output power measurement system is obtained, which can be applied to any resonant converter in the frequency operation range.
机译:如今,感应加热(IH)技术凭借其安全性,清洁性和高效率等优势在国内烹饪市场上占主导地位。这种高效率和高功率密度的实现是通过谐振功率转换器实现的,因此,需要对其进行精确控制。本文提出了一种基于现场可编程门阵列的在线功率测量系统,该系统可以使控制系统执行适当的功率控制。拟议的功率测量系统通过两个低成本的1位二阶ΣΔ模数转换器测量数字化输出电压和电流的输出功率。分析了比特流,并考虑到结果,提出并分析了几种测量方法。然后,进行了噪声灵敏度分析,以验证所提出的测量方法。分析和仿真结果已经通过应用于家用IH的谐振功率转换器进行了测试,该转换器的开关频率从30到80kHz不等。为了评估系统的准确性,已经对已实施的测量方法进行了统计分析。最后,所选的测量方法已针对多个船只进行了验证。结论是,获得了一种精确且具有成本效益的输出功率测量系统,该系统可应用于在频率工作范围内的任何谐振转换器。

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