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SSPC Active Control Strategy by Optimal Trajectory of the Current for Onboard System Applications

机译:车载系统电流最优轨迹的SSPC主动控制策略

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There is a clear trend to increase the use of electrical systems in aircrafts, leading to a growing demand for electrical power in the aircraft. This increasing power consumption has resulted in increasing dc voltage levels, to reduce energy losses and the size of wiring, as a result of the reduced current levels. However, traditional protections such as circuit breakers are not adequate for the protection of the new systems in high dc voltage, and consequently, it is necessary to introduce new technologies in the field of protection devices. One of these is the solid-state power controller (SSPC), which combines the functions of connecting loads to the bus bars and protecting electrical installations against overload and short circuits. On the other hand, within these electrical systems, the connection of certain loads, such as highly capacitive ones (dc–dc, inverters, etc.), implies the need to develop new control strategies to improve the connection process by SSPCs. This paper presents and analyzes a new advanced control strategy that optimizes the performance during the connection of highly capacitive loads using SSPCs.
机译:明显的趋势是增加飞机上电气系统的使用,导致飞机上对电力的需求不断增长。由于电流水平的降低,功耗的增加导致直流电压水平的提高,从而减少了能量损失和接线尺寸。然而,诸如断路器的传统保护措施不足以在高直流电压下保护新系统,因此,有必要在保护装置领域引入新技术。其中之一是固态功率控制器(SSPC),它结合了将负载连接到母线以及保护电气设备免于过载和短路的功能。另一方面,在这些电气系统中,某些负载的连接(例如高电容负载(dc-dc,逆变器等))意味着需要开发新的控制策略以改善SSPC的连接过程。本文介绍并分析了一种新的高级控制策略,该策略可在使用SSPC连接高容性负载时优化性能。

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