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General Active Global Stabilization of Multiloads DC-Power Networks

机译:多负载直流电网的一般主动全局稳定

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Implantation of complex dc-power network is one of the main research topics in more electric aircraft (MEA). In such applications, small and light systems are required and so optimization of passive elements, such as dc-bus capacitance and filtering inductance, is an important issue. It is known that the reduction of dc-bus capacitance may lead to instability of an MVdc network. So, if no stabilizer is used, the risk of instability must be considered, while designing the system passive elements. In this paper, we will first study the small signal stability of an MVdc network composed of three loads: an inverter supplying a permanent magnet synchronous motor, a dc/dc converter feeding a resistive load, and a supercapacitor controlled by a bidirectional dc/dc converter. Then, we will propose a large-signal-stabilizing system to ensure global stability by generating proper stabilizing power references for the whole system. The contribution of the loads to network stability is adjustable. The validity of the proposed method will be confirmed by experimentations.
机译:植入复杂的直流电源网络是更多电动飞机(MEA)的主要研究主题之一。在此类应用中,需要小型轻便的系统,因此优化无源元件(例如直流总线电容和滤波电感)是一个重要的问题。众所周知,直流总线电容的减小可能会导致MVdc网络的不稳定。因此,如果不使用稳定器,则在设计系统无源元件时必须考虑不稳定的风险。在本文中,我们将首先研究由三个负载组成的MVdc网络的小信号稳定性:向永磁同步电动机供电的逆变器,为电阻负载供电的dc / dc转换器以及由双向dc / dc控制的超级电容器转换器。然后,我们将提出一个大信号稳定系统,通过为整个系统生成适当的稳定功率基准来确保全局稳定性。负载对网络稳定性的影响是可调的。实验将验证所提出方法的有效性。

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