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Reliability, Dead-Time, and Feasibility Analysis of a Novel Modular Tankless ZCS Inverter for More Electric Aircraft

机译:新型模块化无坦克ZCS逆变器用于更多电动飞机的可靠性,停滞时间和可行性分析

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An increase in the demand of the electrical power in the more electric aircraft (MEA) with electrical equipment replacing the pneumatic and hydraulic equipment; the modular power converter (MPC) is needed for power conversion and power distribution in the MEA. The MPC is a promising technological solution for high voltage and high power conversion. The scalable configuration of MPC's improves reliability and availability of the converter. This paper presents a novel modular zero current switching (ZCS) inverter for applications in the MEA. The proposed inverter achieves ZCS through a modular circuital configuration and eliminates the utilization of dead time. Elimination of dead time in the proposed topology will be helpful in proposing a low-complex control circuit for its integration with the 270-V dc power distribution architecture of the MEA. Moreover, with respect to MEA, the reliability and economic feasibility of the converter is also important, as reliability is a fundamental requirement in aircraft safety-critical equipment. A comparative analysis in terms of reliability, economic feasibility, and the effect of dead time on inverter output for the proposed inverter with respect to the conventional pulsewidth modulated inverter is presented in this paper. The operational and low loss features of the proposed converter are highlighted.
机译:用电气设备代替气动和液压设备,增加了电动飞机(MEA)的电力需求; MEA中的功率转换和功率分配需要模块化功率转换器(MPC)。 MPC是用于高电压和高功率转换的有前途的技术解决方案。 MPC的可扩展配置提高了转换器的可靠性和可用性。本文提出了一种新颖的模块化零电流开关(ZCS)逆变器,用于MEA。提出的逆变器通过模块化电路配置实现ZCS,并消除了空载时间。在建议的拓扑结构中消除死区时间将有助于提出一种低复杂度的控制电路,以使其与MEA的270V直流电源分配架构集成。此外,关于MEA,转换器的可靠性和经济可行性也很重要,因为可靠性是飞机安全关键设备的基本要求。相对于传统的脉宽调制逆变器,本文对可靠性,经济可行性以及空载时间对所提出的逆变器的逆变器输出的影响进行了比较分析。该转换器的工作和低损耗特性得到了强调。

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