A new high-frequency multilevel inverter effecting cables weight and energy efficiency of aircraft

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE Aircraft Engineering and Aerospace Technology Pub Date : 2024-04-03 DOI:10.1108/aeat-06-2023-0158
Erol Can, Ugur Kilic
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Abstract

Purpose

Static inverters are very important for the emergency energy distribution system of aircraft and similar machines. At the same time, the electrical energy produced at high frequency for electrical devices is used to reduce the weight of the cables in the aircraft and spacecraft because of the skin effect. In the high-frequency system, a thinner cable cross-section is used, and a great weight reduction occurs in the aircraft. So, fuel economy, less and late wear of the materials (landing gear, etc.) can be obtained with decreasing weight. This paper aims to present the development of a functional multilevel inverter (FMLI) with fractional sinus pulse width modulation (FSPWM) and a reduced number of switches to provide high-frequency and quality electrical energy conversion.

Design/methodology/approach

After the production of FSPWM for FMLI with a reduced component, which, to the best of the authors’ knowledge, is presented for the first time in this study, is explained step by step, and eight operating states are given according to different FSPWMs operating the circuit. The designed inverter and modulation technique are compared by testing the conventional modular multilevel inverter on different loads.

Findings

According to application results, it is seen that there is a 50% reduction in cross-section from 100 Hz to 400 Hz with the skin effect. At 1000 Hz, there is a 90% cross-section reduction. The decrease can be in cable weights that may occur in aircraft from 10 kg to 100 kg according to different frequencies. It causes less harmonic distortion than conventional converters. This supports the safer operation of the system. Compared to the traditional system, the proposed system provides more amplitude in converting the source to alternating voltage and increases the efficiency.

Practical implications

FSPWM is developed for multilevel inverters with reduced components at the high frequency and cascaded switching studies in the power electronics of aircraft.

Social implications

Although the proposed system has less current and power loss as mentioned in the previous sections, it contains fewer power elements than conventional inverters that are equivalent for different hardware levels. This not only reduces the cost of the system but also provides ease of maintenance. To reduce the cable load in aircraft and create more efficient working conditions, 400 Hz alternative voltage is used. The proposed system causes less losses and lower harmonic distortions than traditional systems. This will reduce possible malfunctions and contribute to aircraft reliability for passengers and cargo. As technology develops, it is revealed that the proposed inverter system will be more efficient than traditional inverters when devices operating at frequencies higher than 400 Hz are used. With the proposed inverter, safer operation will be ensured, while there will be less energy loss, less fuel consumption and less carbon emissions to the environment.

Originality/value

The proposed inverter structure shows that it can provide energy transmission for electrical devices in space and aircraft by using the skin effect. It also contains less power elements than the traditional inverters, which are equivalent for different levels of hardware.

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影响飞机电缆重量和能效的新型高频多电平逆变器
目的 静态逆变器对于飞机和类似机器的应急能源分配系统非常重要。同时,由于集肤效应,电气设备在高频下产生的电能可用于减轻飞机和航天器中电缆的重量。在高频系统中,使用了更薄的电缆截面,从而大大减轻了飞机的重量。因此,在减轻重量的同时,还能节省燃料,减少材料(起落架等)的磨损和延迟磨损。本文旨在介绍一种采用分数正弦脉宽调制(FSPWM)和减少开关数量的功能性多电平逆变器(FMLI)的开发情况,以提供高频率和高质量的电能转换。设计/方法/途径据作者所知,在本研究中首次提出了用于 FMLI 的 FSPWM,并对其进行了逐步说明,根据电路运行的不同 FSPWM,给出了八种工作状态。通过在不同负载上测试传统的模块化多电平逆变器,对所设计的逆变器和调制技术进行了比较。在 1000 Hz 时,横截面减少了 90%。根据不同的频率,飞机上的电缆重量可从 10 千克减少到 100 千克。与传统转换器相比,它的谐波畸变更小。这有助于系统更安全地运行。与传统系统相比,拟议系统在将源电压转换为交流电压时提供了更大的振幅,并提高了效率。社会影响虽然如前几节所述,拟议系统的电流和功率损耗较小,但与不同硬件级别的传统逆变器相比,它包含的功率元件较少。这不仅降低了系统成本,而且便于维护。为了减少飞机上的电缆负载,创造更高效的工作条件,使用了 400 赫兹替代电压。与传统系统相比,拟议的系统损耗更小,谐波失真更低。这将减少可能出现的故障,提高飞机对乘客和货物的可靠性。随着技术的发展,当使用频率高于 400 赫兹的设备时,拟议的逆变器系统将比传统逆变器更有效。原创性/价值所提出的逆变器结构表明,它可以利用集肤效应为太空和飞机中的电气设备提供能量传输。与传统的逆变器相比,它所包含的功率元件也更少,而传统的逆变器在不同的硬件级别上都是等效的。
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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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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