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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Decentralized linear quadratic power system stabilizers for multi-machine power systems
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Decentralized linear quadratic power system stabilizers for multi-machine power systems

机译:用于多机电源系统的分散式线性二次方电源系统稳定器

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摘要

Linear quadratic stabilizers are well-known for their superior control capabilities when compared to the conventional lead-lag power system stabilizers. However, they have not seen much of practical importance as the state variables are generally not measurable; especially the generator rotor angle measurement is not available in most of the power plants. Full state feedback controllers require feedback of other machine states in a multi-machine power system and necessitate block diagonal structure constraints for decentralized implementation. This paper investigates the design of Linear Quadratic Power System Stabilizers using a recently proposed modified Heffron-Phillip's model. This model is derived by taking the secondary bus voltage of the step-up transformer as reference instead of the infinite bus. The state variables of this model can be obtained by local measurements. This model allows a coordinated linear quadratic control design in multi machine systems. The performance of the proposed controller has been evaluated on two widely used multi-machine power systems, 4 generator 10 bus and 10 generator 39 bus systems. It has been observed that the performance of the proposed controller is superior to that of the conventional Power System Stabilizers (PSS) over a wide range of operating and system conditions.
机译:与传统的超前-滞后电力系统稳定器相比,线性二次稳定器以出色的控制能力而闻名。但是,由于状态变量通常无法测量,因此它们没有实际意义。特别是在大多数发电厂中,发电机转子角测量功能不可用。全状态反馈控制器需要多机动力系统中其他机器状态的反馈,并且需要块对角线结构约束才能分散实施。本文使用最近提出的改进型Heffron-Phillip模型研究了线性二次电源系统稳定器的设计。通过将升压变压器的次级母线电压而不是无限母线作为参考来推导该模型。该模型的状态变量可以通过局部测量获得。该模型允许在多机器系统中进行协调线性二次控制设计。已在两个广泛使用的多机电源系统(4个发电机10母线和10个发电机39母线系统)上对所提出的控制器的性能进行了评估。已经观察到,在广泛的操作和系统条件下,所提出的控制器的性能优于传统的电力系统稳定器(PSS)。

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