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An enhanced secondary control approach for voltage restoration in the DC distribution system

机译:直流配电系统中用于电压恢复的增强型辅助控制方法

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摘要

The paper will deal with the problem of establishing a desirable power sharing in multi-feed electric power system for future more-electric aircraft (MEA) platforms. The MEA is one of the major trends in modern aerospace engineering aiming for reduction of the overall aircraft weight, operation cost and environmental impact. Electrical systems are employed to replace existing hydraulic, pneumatic and mechanical loads. Hence the onboard installed electrical power increases significantly and this results in challenges in the design of electrical power systems (EPS). One of the key paradigms for future MEA EPS architectures assumes high-voltage dc distribution with multiple sources, possibly of different physical nature, feeding the same bus(es). In our study we investigate control approaches to guarantee that the total electric load is shared between the sources in a desirable manner. A novel communication channel based secondary control method is proposed in this paper. Stability of the proposed method is investigated and it proves that the system stability margin is upgraded using the compensation method. The analytical results of the study will be supported by both time-domain simulations and experimental results.
机译:本文将解决在未来的多电飞机(MEA)平台的多馈电系统中建立理想的功率共享的问题。 MEA是现代航空工程的主要趋势之一,旨在减少飞机的整体重量,运营成本和环境影响。电气系统用于替代现有的液压,气动和机械负载。因此,车载安装的电力显着增加,这在电力系统(EPS)的设计中带来了挑战。未来MEA EPS架构的主要范例之一是假设高压dc分配具有多个电源,可能具有不同的物理性质,并为同一条总线供电。在我们的研究中,我们研究了控制方法,以确保总电源负载以理想的方式在电源之间共享。提出了一种基于通信信道的新型二次控制方法。对所提方法的稳定性进行了研究,证明了使用补偿方法可以提高系统的稳定性裕度。时域模拟和实验结果将支持该研究的分析结果。

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