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Application of Dynamic Phasor Concept in Modeling Aircraft Electrical Power Systems

机译:动态相量概念在模型飞机电力系统中的应用

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As future commercial aircraft incorporates more EMAs, the aircraft electrical power system architecture will become a complex electrical distribution system with increased numbers of power electronic converters (PEC) and electrical loads. The overall system performance and the power management for on-board electrical loads are therefore key issues that need to be addressed. In order to understand these issues and identify high pay-off technologies that would enable a major improvement of the overall system performance, it is necessary to study the aircraft EPS at the system level. Due to the switching behaviour of power electronic devices, it is very time-consuming and even impractical to simulate a large-scale EPS with some non-linear and time-varying models. The dynamic phasor (DP) technique is one way to solve that problem. This DP technique is naturally a frequency-domain analysis method and has been successfully applied in modeling of electromagnetic machines, flexible AC transmission systems etc. our previous work has extended this technique to modeling of controlled rectifier units (CRU), auto-transformer rectifier units (ATRU) etc. This paper is to summarize the DP model library developed in the University of Nottingham for accelerated simulation studies of the aircraft EPS. The three-phase models (ABC models) are used for comparative studies. The DP modeling technique is compared with the ABC model using the simulation of a twin-generator aircraft EPS, which is based on the more open electrical technology (MOET) large aircraft EPS architecture. The switching behaviour of ATRU is included in the ABC model for the EPS studies. However, the switching behaviour of PWM converters is not considered due to computation convergence problems. The efficiency and the accuracy of the DP model are demonstrated through comparison of the simulation results under normal operation conditions.
机译:由于未来的商用飞机采用更多的EMA,飞机电力系统架构将成为一种复杂的电力分配系统,具有增加的电力电子转换器(PEC)和电负载。因此,用于车载电负载的整体系统性能和电源管理是需要解决的关键问题。为了了解这些问题并确定能够提高整体系统性能的高额偿还技术,有必要在系统级别研究飞机EPS。由于电力电子设备的切换行为,模拟了具有一些非线性和时变模型的大规模EPS非常耗时,甚至是不切实际的。动态相量(DP)技术是解决该问题的一种方法。该DP技术自然是一种频域分析方法,已成功应用于电磁机的建模,灵活的交流传输系统等。我们以前的工作将该技术扩展到控制整流单元(CRU),自动变压器整流器单元建模。 (ATRU)等。本文总结了诺丁汉大学开发的DP模型图书馆,用于加速对飞机EPS的仿真研究。三相模型(ABC模型)用于比较研究。使用双发电机飞机EPS的模拟将DP建模技术与ABC模型进行比较,这是基于更开放的电气技术(MOET)大型飞机EPS架构。 ATRU的切换行为包括在EPS研究中的ABC模型中。然而,由于计算会聚问题,不考虑PWM转换器的切换行为。通过在正常运行条件下的模拟结果的比较来证明DP模型的效率和准确性。

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