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Medium Voltage DC Power Systems on Ships: an Off-line Parameter Estimation for Tuning the Controllers’ Linearizing Function

机译:船上中压直流电源系统:离线参数估计,用于调节控制器的线性化功能

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Future shipboard power systems using Medium Voltage Direct (MVDC) technology will be based on a widespread use of power converters for interfacing generating systems and loads with the main DC bus. Such a heavy exploitation makes the voltage control challenging in the presence of tightly controlled converters. By modeling the latter as Constant Power Loads (CPLs), one possibility to ensure the bus voltage stability is offered by the Linearizing via State Feedback technique (LSF), whose aim is to regulate the generating DC-DC power converters to compensate for the destabilizing effect of the CPLs. Although this method has been shown to be effective when system parameters are perfectly known, only a partial linearization can be ensured in case of parameter mismatch, thus jeopardizing the system stability. In order to improve the linearization, therefore guaranteeing the voltage stability, an estimation method is proposed in this paper. To this aim, off-line tests are performed to provide the input data for the estimation of model parameters. Such estimated values are subsequently used for correctly tuning the linearizing function of the DC-DC converters. Simulation results for bus voltage transients show that in this way converters become sources of stabilizing power.
机译:未来使用中压直流(MVDC)技术的舰载电源系统将基于电源转换器的广泛使用,以将发电系统和负载与主直流母线接口。在存在严格控制的转换器的情况下,如此繁重的开发使电压控制具有挑战性。通过将后者建模为恒定功率负载(CPL),通过状态反馈线性化技术(LSF)提供了一种确保总线电压稳定性的可能性,该技术的目的是调节产生的DC-DC电源转换器以补偿不稳定因素。 CPL的效果。尽管已证明该方法在完全了解系统参数时是有效的,但在参数不匹配的情况下只能确保部分线性化,从而危及系统稳定性。为了提高线性度,从而保证电压的稳定性,提出了一种估计方法。为此,进行离线测试以提供用于估计模型参数的输入数据。这些估计值随后用于正确调整DC-DC转换器的线性化功能。总线电压瞬变的仿真结果表明,通过这种方式,转换器成为稳定电源的来源。

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