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Protection System Considerations for DC Distributed Electrical Propulsion Systems

机译:用于直流分布式电推进系统的保护系统考虑因素

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Distributed electrical propulsion for aircraft, also known as turbo-electric distributed propulsion (TeDP), will require a complex electrical power system which can deliver power to multiple propulsor motors from gas turbine driven generators. To ensure that high enough power densities are reached, it has been proposed that such power systems are superconducting. Key to the development of these systems is the understanding of how faults propagate in the network, which enables possible protection strategies to be considered and following that, the development of an appropriate protection strategy to enable a robust electrical power system with fault ride-through capability. This paper investigates possible DC protection strategies for a radial DC architecture for a TeDP power system, in terms of their ability to respond appropriately to a DC fault and their impact on overall system weight and efficiency. This latter aspect has already been shown to be critical to shaping the overall TeDP concept competitiveness.
机译:用于飞机的分布式电推进,也称为涡轮电气分布推进(TEDP),需要复杂的电力系统,该电力系统可以从燃气涡轮机驱动的发电机输送到多个推进电动机的电力。为了确保达到足够高的功率密度,已经提出了这种电力系统是超导。这些系统的开发的关键是了解如何在网络中传播故障,这使得可以考虑和遵循的可能性策略,并开发适当的保护策略,以实现具有故障驾驶功能的强大电力系统。本文调查了TEDP电力系统的径向直流架构的可能直流保护策略,就其适当地对直流故障进行适当响应及其对整体系统重量和效率的影响。后一种方面已经被证明对塑造整体TEDP概念竞争力至关重要。

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