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Estimation of maximum allowable time-delay bound for system stability of network controlled parallel DC/DC buck converters

机译:网络控制的并行DC / DC降压转换器的系统稳定性的最大允许时延界限的估计

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The current trend in distributed energy system control is moving toward implementing quasi-decentralized control strategy where the control signals are exchanged over shared dedicated control or communication networks which reduces the complexity in the wiring and enhances the reliability. Transmitting control signals through shared networks induces time delays and data losses which may destabilize the system. So it is important to identify what the maximum allowable delay bound (MADB) can be tolerant with respect to system stability. The paper proposes a new method for estimating the allowable time delay under which the system stability can be maintained. The proposed method is originated from analyzing the network controlled parallel DC/DC Buck converters. The influences of the system parameters and controllers on the boundary of the MADB are studied. Simulation using Matlab SimPowerSystem Toolbox is performed to verify the stability bound determined by the MADB. The results are compared with the methods previously reported in the literature and the new method is proved to be simpler in estimation procedures and easier in applications to practical systems.
机译:分布式能源系统控制的当前趋势正在朝着实施准分散控制策略的方向发展,在该策略中,控制信号通过共享的专用控制或通信网络进行交换,从而降低了布线的复杂性并提高了可靠性。通过共享网络发送控制信号会引起时间延迟和数据丢失,这可能会使系统不稳定。因此,重要的是要确定最大允许延迟界限(MADB)可以容忍的系统稳定性。本文提出了一种新的估计允许时间延迟的方法,在该时间范围内可以保持系统的稳定性。所提出的方法源自对网络控制的并行DC / DC Buck转换器的分析。研究了系统参数和控制器对MADB边界的影响。使用Matlab SimPowerSystem Toolbox进行仿真以验证MADB确定的稳定性界限。将结果与文献中先前报道的方法进行了比较,并且证明了该新方法在估计过程中更简单,并且在实际系统中更容易应用。

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