The use of a front-end ZVZCS DC-DC converter for an IoT VFD inverter system in the paddle wheel machine drive applications

N. Chirdchoo, Watanyu Meesrisuk, Weerasak Chuenta
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Abstract

This research paper proposes the integration of power electronics and internet of things (IoT) technologies to apply in shrimp farms. By focusing on the design of a front-end converter, a three-level half-bridge (3L-HB) DC-DC converter with the zero voltage and zero current switching (ZVZCS) technique is chosen to be the front-end power converter to supply the DC bus voltage for the variable frequency drive (VFD) inverter for the paddle wheel machine in the shrimp pond. To confirm the effectiveness and possibility of the proposed concept, the circuit was theoretically designed and tested at 540 V DC of the input voltage, 700 V DC of the DC bus voltage and 3 kW of rated power. It is found that, the front-end converter can step up the DC bus to be 700 V DC which is enough for operating the VFD inverter. All switches can achieve the soft switching condition ZVZCS resulting in decreasing the switching loss and increasing the reliability of the circuit. The maximum experimental efficiency of the front-end converter is 94.9% at 75% of a full load. In addition, the introductory concept of using the IoT system also presents to improve the shrimp farming method.
将前端 ZVZCS DC-DC 转换器用于桨轮机驱动应用中的物联网 VFD 变频器系统
本研究论文提出将电力电子技术和物联网(IoT)技术整合应用于养虾场。通过重点关注前端转换器的设计,本文选择了采用零电压零电流开关(ZVZCS)技术的三电平半桥(3L-HB)DC-DC 转换器作为前端功率转换器,为虾池中的桨轮机变频驱动(VFD)逆变器提供直流母线电压。为了证实所提概念的有效性和可行性,对电路进行了理论设计,并在输入电压为 540 V 直流、直流母线电压为 700 V 直流、额定功率为 3 kW 的条件下进行了测试。测试结果表明,前端转换器可将直流母线电压升至 700 V 直流,这足以满足变频驱动逆变器的运行要求。所有开关都能达到软开关条件 ZVZCS,从而降低了开关损耗,提高了电路的可靠性。在满载 75% 时,前端转换器的最高实验效率为 94.9%。此外,还介绍了使用物联网系统改进养虾方法的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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