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Robust control of an isolated hybrid wind-diesel power system using LinearQuadratic Gaussian approach

机译:使用LinearQuadratic高斯方法对隔离式混合式风力柴油动力系统进行鲁棒控制

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This paper presents the application of the Linear Quadratic Gaussian (LQG) controller for voltage and frequency regulation of an isolated hybrid wind-diesel scheme. The scheme essentially consists of a vertical axis wind turbine driving a self-excited induction generator connected via an asynchronous (AC-DC-AC) link to a synchronous generator driven by a diesel engine. The synchronous generator is equipped with a voltage regulator and a static exciter. The wind generator and the synchronous generator together cater for the local load and power requirement. However, the load bus voltage and frequency are governed by the synchronous generator. The control objective aims to regulate the load voltage and frequency. This is accomplished via controlling the field voltage and rotational speed of the synchronous generator. The complete nonlinear dynamic model of the system has been described and linearized around an operating point. The standard Kalman filter technique has been employed to estimate the full states of the system. The computational burden has been minimized to a great extent by computing the optimal state feed-back gains and the Kalman state space model off-line. The proposed controller has the advantages of robustness, fast response and good performance. The hybrid wind diesel energy scheme with the proposed controller has been tested through a step change in both wind speed and load impedance. Simulation results show that accurate tracking performance of the proposed hybrid wind diesel energy system has been achieved.
机译:本文介绍了线性二次高斯(LQG)控制器在隔离式混合风柴油机方案的电压和频率调节中的应用。该方案主要由垂直轴风力涡轮机组成,该风力涡轮机驱动通过异步(AC-DC-AC)链接连接到由柴油机驱动的同步发电机的自励感应发电机。同步发电机配备有稳压器和静态励磁机。风力发电机和同步发电机共同满足本地负载和功率需求。但是,负载总线的电压和频率由同步发电机控制。控制目标旨在调节负载电压和频率。这是通过控制同步发电机的励磁电压和转速来实现的。已经描述了系统的完整非线性动力学模型,并围绕一个工作点对其进行了线性化。标准的卡尔曼滤波技术已被用来估计系统的完整状态。通过离线计算最佳状态反馈增益和卡尔曼状态空间模型,可以最大程度地减少计算负担。所提出的控制器具有鲁棒性,快速响应和良好性能的优点。通过风速和负载阻抗的阶跃变化,对带有建议控制器的混合风力柴油能源方案进行了测试。仿真结果表明,所提出的混合风力柴油能源系统具有精确的跟踪性能。

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