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首页> 外文期刊>IEEE Transactions on Energy Conversion >Nonlinear Identification and Control of a Turbogenerator - An On-Line Scheduled Multiple Model/Controller Approach
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Nonlinear Identification and Control of a Turbogenerator - An On-Line Scheduled Multiple Model/Controller Approach

机译:汽轮发电机的非线性辨识与控制-在线调度多模型/控制器方法

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摘要

An on-line scheduled multiple model/controller approach to nonlinear identification and control of a turbogenerator is presented. A local model network is used to represent the nonlinear dynamics of a turbogenerator. This comprises a nonlinear combination of local, linear submodels identified at different operating points. Nonlinear control of the turbogenerator by the automatic voltage regulator is then achieved by online blending of multiple PID controllers, each designed for a linear submodel. This approach has the practical advantage of being directly based on well-established principles from linear systems. The technique is tested on a validated simulation of a 3-kVA laboratory micro-machine system. The blending mechanism is derived from an analysis of the nonlinear characteristics of the system. Stability of the closed-loop system was proved using a stability theorem for Tanaka-Sugeno fuzzy systems along with a passivity stability principle. As expected, the resultant nonlinear multiple-controller automatic voltage regulator produces better overall performance than a single PID controller and a fixed-gain controller designed for a single operating point. The simulation studies further suggest that the new nonlinear controller can effectively handle variations in the operating point and is also tolerant to severe fault conditions.
机译:提出了一种在线调度的多模型/控制器方法,用于涡轮发电机的非线性辨识和控制。局部模型网络用于表示涡轮发电机的非线性动力学。这包括在不同工作点识别的局部线性子模型的非线性组合。然后,通过在线混合多个PID控制器来实现自动发电机对涡轮发电机的非线性控制,每个PID控制器都是为线性子模型设计的。这种方法具有直接基于线性系统中公认的原理的实际优势。这项技术在3-kVA实验室微型机器系统的经过验证的仿真上进行了测试。混合机制是通过分析系统的非线性特性得出的。利用Tanaka-Sugeno模糊系统的稳定性定理以及无源稳定性原理证明了闭环系统的稳定性。如预期的那样,与为单个工作点设计的单个PID控制器和固定增益控制器相比,最终的非线性多控制器自动电压调节器可产生更好的整体性能。仿真研究进一步表明,新型非线性控制器可以有效地处理工作点的变化,并且还可以承受严重的故障情况。

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