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Load Control for the DC Electrical Power Distribution System of the More Electric Aircraft

机译:载荷控制较大电气飞机的直流配电系统

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摘要

The more electric aircraft concept aims at increasing the amount and the power of the electrical subsystems on the next generation of aircraft. One of the major challenges in this framework is that the electric power is generated by means of electrical generators connected to the jet turbine shaft. In order to satisfy the peak power demand and overload conditions, the generators are oversized, increasing weight and total cost of operation. Possible solutions to this problem is to decrease the size of the generator and to provide the peak power with storage systems. As an alternative, load disconnection during peak demand (load-shedding) can be enforced with solid-state switches. This paper presents a different approach, i.e., by modifying the dc voltage of the distribution, the load can be controlled. In order to achieve this objective, a precise on-line identification algorithm is proposed. Theoretical analysis is performed, and simulation results on a study-case distribution system are reported, highlighting how the proposed load identification and control method effectively manages a power curtailment condition without load-shedding or storage systems. Power hardware in the loop simulations on a dc microgrid with a multiport power converter confirm the simulation analysis.
机译:电气飞机概念旨在提高下一代飞机上电器子系统的数量和力量。该框架中的主要挑战之一是通过连接到喷射涡轮轴的发电机产生电力。为了满足峰值电力需求和过载条件,发电机的超大,增加重量和总操作成本。此问题的可能解决方案是降低发电机的大小,并通过存储系统提供峰值功率。作为替代方案,可以使用固态开关强制执行峰值需求(装载脱落)期间的负载断开。本文提出了一种不同的方法,即,通过修改分布的直流电压,可以控制负载。为了实现这一目标,提出了一种精确的在线识别算法。已经进行了理论分析,报告了研究壳体分布系统的仿真结果,突出了所提出的负载识别和控制方法如何有效地管理没有负载脱落或存储系统的电源缩减条件。电源硬件在LOOP模拟中的DC微电网与多端口功率转换器确认模拟分析。

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