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Tracking Control for a DC Microgrid Feeding Uncertain Loads in More Electric Aircraft: Adaptive Backstepping Approach

机译:直流微电网在更多电动飞机中馈送不确定负载的跟踪控制:自适应反推方法

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More electric aircrafts (MEAs) comprise a vast amount of power electronic loads, which usually behave as constant power loads (CPLs). The incremental negative impedance of CPLs threatens system stability. To ensure an effective control of power flow in MEAs, eliminating the undesired behavior of CPLs is a necessity. This aim requires spontaneous power estimation of the time-varying uncertain loads. In this paper, an adaptive backstepping controller, which is interconnected to a third-degree cubature Kalman filter, is developed for a dc microgrid (MG) feeding nonideal CPLs. At first, the load power is considered as an artificial state and augmented into the system states, which enables estimation of not only the dc MG states but also the unknown value of the load power. The estimated load power is then forwarded to a backstepping controller. The systematic approach of this controller allows obtaining the control signal, which is the duty ratio of the switch, to not only system stabilizing but also tracking a desired voltage of the dc bus under the load power variations. The proposed adaptive controller is tested on a dc MG that has one CPL. The conducted experimental results verify the proposed nonlinear control in tracking the desired voltage of the dc bus under slow and fast variations of the load power.
机译:更多的电动飞机(MEA)包含大量的电力电子负载,这些负载通常表现为恒定电力负载(CPL)。 CPL的递增负阻抗会威胁系统稳定性。为了确保有效地控制MEA中的功率流,必须消除CPL的不良行为。该目标需要随时间变化的不确定负载的自发功率估计。在本文中,针对直流微电网(MG)馈送非理想CPL的情况,开发了一种自适应反推控制器,该控制器已与三级容积卡尔曼滤波器互连。首先,将负载功率视为一种人造状态,并将其扩展到系统状态,这不仅可以估算dc MG状态,还可以估算负载功率的未知值。然后将估计的负载功率转发给反推控制器。该控制器的系统方法允许获得控制信号,该信号是开关的占空比,不仅可以使系统稳定,还可以跟踪负载功率变化下直流母线的期望电压。所提出的自适应控制器在具有一个CPL的直流MG上进行了测试。进行的实验结果验证了在负载功率的缓慢和快速变化下跟踪直流母线所需电压时提出的非线性控制。

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