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L_1 adaptive networked controller for islanded distributed generation systems in a microgrid

机译:适用于微电网中孤岛分布式发电系统的L_1自适应网络控制器

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摘要

In this paper, we implement an output-feedback L-1 adaptive controller for islanded distributed generation systems (DGs) with communication, load and generation constraints. The L-1 adaptive controller is introduced to deal with nonlinearities of dynamical systems and unknown constraints. It primarily consists of a predictor, an adaptive law, and a control law. Herein, the controller can sustain desired performance and the robustness, in which the control law loop contains a low pass filter that sustain a rapid adaptation rate without fluctuations. The critical challenge into a standalone microgrid is to coordinate the necessitate load power with the distributed generations production in the presence of load/generation fluctuations. The coordinated controller is implemented to undertake the conflicts, and to enhance the performance, and to minimise the control cost by coordinate the requirements between decentralised controllers. The proposed controller is worthy for ensuring the network stability of DGs in a microgrid environment in the presence of uncertainties and transmission time delays. A typical simulation example is presented to confirm the effectiveness of the proposed design procedure.
机译:在本文中,我们为具有通信,负载和发电约束的孤岛式分布式发电系统(DG)实现了一种输出反馈L-1自适应控制器。引入L-1自适应控制器来处理动力系统的非线性和未知约束。它主要由预测变量,自适应定律和控制定律组成。在此,控制器可以维持期望的性能和鲁棒性,其中控制律回路包含低通滤波器,该低通滤波器维持快速的适应率而没有波动。独立微电网的关键挑战是在存在负荷/发电波动的情况下,将所需的负荷功率与分布式发电相协调。通过协调分散的控制器之间的要求,实现协调控制器来承担冲突,并提高性能并最小化控制成本。所提出的控制器对于在不确定性和传输时间延迟的情况下确保微电网环境中DG的网络稳定性是值得的。给出了一个典型的仿真示例,以确认所提出的设计程序的有效性。

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