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New Passivity Design for the Excitation and Steam-Valving Control of Synchronous Generators

机译:同步发电机励磁和蒸汽控制的新型被动设计

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This paper presents a new passivity design for the excitation and steam-valving control of synchronous generators. Different from conventional control method, the proposed control considers the steady-state error of active power and reactive power supporting capability of the generator. Based on the five-order nonlinear model with two inputs, steam-valving control is designed by backstepping method at first to ensure the angle stability, and then excitation control is achieved by using the passivity approach incorporating the high side voltage control technique. When design the controller, two integrators are added in the differential equations to reduce the steady-state error. And the step up transformer reactance is compensated in design, so the excitation control is optimized to sustain a high level voltage. The simulation shows the approach has strong positive impact on the performance of active and reactive power of the generator.
机译:本文介绍了同步发电机的激励和蒸汽控制的新型被动设计。不同于传统的控制方法,所提出的控制考虑了发电机的有功功率和无功功率支撑能力的稳态误差。基于具有两个输入的五阶非线性模型,首先通过背击方法设计蒸汽阀控制,以确保角度稳定性,然后通过使用结合高侧电压控制技术的传感方法实现激励控制。当设计控制器时,在微分方程中添加两个集成器以减少稳态误差。并且升压变压器电抗在设计中得到补偿,因此优化激励控制以维持高电平电压。仿真显示该方法对发电机的主动和无功功率的性能具有很强的积极影响。

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