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A Feedback Linearization Scheme for the Control of Synchronous Generators

机译:同步发电机控制的反馈线性化方案

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This article proposes an advanced non-linear control algorithm to manage active power and voltage provided by a synchronous generator. The algorithm is based on the so-called feedback linearization theory, which relies on the central concept to algebraically transform non-linear systems dynamics into fully or partly linear ones, so that linear control techniques can be applied. Starting from the basic (electrical, magnetic, and mechanical) machine equations, a suitable state transformation is introduced in order to apply the feedback linearization block to the generator model. A regulation scheme is then derived, which receives as inputs the measure and reference signals of both the electric power and the voltage at the generator side and produces as outputs the physical inputs of the machine, i.e., the mechanical torque and the field voltage. Particular attention is devoted to both the linearization process, where internal dynamics and stability studies play an important role, and to the design of the two (power and voltage) decoupled regulators. Several simulations are finally performed in order to verify the effectiveness of the proposed approach and to highlight its main advantages and drawbacks with respect to the traditional P-V synchronous generator control strategy.
机译:本文提出了一种先进的非线性控制算法来管理同步发电机提供的有功功率和电压。该算法基于所谓的反馈线性化理论,该理论依靠中心概念将非线性系统动力学代数转换为完全或部分线性动力学,从而可以应用线性控制技术。从基本的(电气,电磁和机械)机器方程式开始,引入了合适的状态转换,以便将反馈线性化模块应用于发电机模型。然后导出调节方案,该调节方案接收发电机侧的电功率和电压的测量和参考信号作为输入,并且产生输出机器的物理输入,即机械转矩和励磁电压。特别注意的是线性化过程和内部(功率和电压)去耦调节器的设计,在线性化过程中内部动力学和稳定性研究起着重要作用。最后进行了一些仿真,以验证所提出方法的有效性,并突出其相对于传统P-V同步发电机控制策略的主要优缺点。

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