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Model predictive control of voltage profiles in MV networks with distributed generation

机译:具有分布式发电的MV网络中电压曲线的模型预测控制

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The presence of distributed generators in Medium Voltage (MV) networks can produce local voltage increase, with inversion of power flows, and emergence of dangerous inverse currents. For this reason, the control of the voltage profile is becoming of paramount importance. However, the design of a dynamic controller is problematic due to the multivariable and large scale nature of the problem, and to the difficulty to derive a reliable model of the system. In this paper, we first identify a MIMO impulse response model of the system, through a suitable identification phase, where a detailed industrial reference simulator of the network is used. Then we propose and design an MPC-based algorithm for control of the network, used at the intermediate level of a three-layer hierarchical structure. At the upper level a static Optimal Power Flow (OPF) computes the required voltage profiles to be transmitted to the MPC level, while at the lower level local Automatic Voltage Regulators (AVR), one for each Distributed Generator (DG), track the reactive power reference values computed by MPC. The proposed method allows to cope with constraints on the voltage profiles and/or on the reactive power flows along the network. If these constraints cannot be satisfied by acting on the available DCs, the algorithm acts on the On-Load Tap Changing (OLTC) transformer. A radial rural network with two feeders, eight DGs, and thirty-one loads is used as case study. The model of the network is implemented in DIgSILENT PowerFactory®, while the control algorithm runs in MATLAB~®. A number of simulation results is reported to witness the main characteristics and limitations of the proposed approach.
机译:中压(MV)网络中分布式发电机的存在会导致局部电压升高,导致功率流反转,并出现危险的反向电流。因此,电压曲线的控制变得至关重要。但是,由于问题的多变量和大规模性质,以及难以获得可靠的系统模型,因此动态控制器的设计存在问题。在本文中,我们首先通过合适的识别阶段,确定了系统的MIMO脉冲响应模型,其中使用了详细的网络工业参考模拟器。然后,我们提出并设计了一种基于MPC的网络控制算法,该算法用于三层分层结构的中间层。在较高级别,静态最佳功率流(OPF)计算要传输到MPC级别的所需电压曲线,而在较低级别,本地自动电压调节器(AVR),每台分布式发电机(DG)都有一个,跟踪无功功率MPC计算的功率参考值。所提出的方法允许应对电压分布和/或沿着网络的无功功率流的约束。如果无法通过作用于可用的DC来满足这些约束,则该算法将作用于有载抽头变换(OLTC)变压器。案例研究使用了一个带有两个馈线,八个DG和三十一个负载的径向农村网络。网络模型在DIgSILENTPowerFactory®中实现,而控制算法在MATLAB〜®中运行。据报道,许多仿真结果证明了该方法的主要特征和局限性。

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