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Sampled-data based discrete and fast load frequency control for power systems with wind power

机译:基于采样数据的风力发电系统的离散和快速负载频率控制

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摘要

Load frequency control employs communication networks to transmit measurements and control signals. The controller is usually designed in continuous-mode and discretized in implementation with a large sampling period, which may result in a degraded dynamic performance or even cause system instability. On the other hand, high penetration of wind power reduces the inertia of the power system, leading to a faster frequency response and larger frequency deviation after a contingency, and desires a fast load frequency control. Therefore, this paper presents a discrete-mode load frequency control scheme considering a large sampling period of control/measurement signals via sampled-data control, and introduces an exponential decay rate as a new performance index to guide a design of load frequency control scheme with desired faster frequency response. The proposed scheme is evaluated on a one-area power system, a traditional two-area power system with wind power and a deregulated three-area power system with wind power. Using the proposed scheme and the state-of-the-art schemes, the frequency response performance and the tolerance to sampling period of power systems are analyzed. The results demonstrate that the proposed control scheme can ensure the stable operation of the system under a larger sampling period so as to reduce the communication network burden. Also, the results show that the controller designed by a large exponential decay rate can provide a fast frequency response to alleviate the impact of the system's frequency response due to the high penetration of wind power.
机译:负载频率控制采用通信网络来传输测量和控制信号。控制器通常以连续模式进行设计,并在实现过程中离散化,且采样周期较长,这可能会导致动态性能下降,甚至导致系统不稳定。另一方面,风力的高渗透减小了电力系统的惯性,导致在意外情况之后更快的频率响应和更大的频率偏差,并且期望快速的负载频率控制。因此,本文提出了一种考虑大采样周期的控制/测量信号通过采样数据控制的离散模式负载频率控制方案,并引入了指数衰减率作为一种新的性能指标,以指导负载频率控制方案的设计。期望更快的频率响应。该方案在一个区域的电力系统,传统的具有风能的两区域电力系统以及解除管制的具有风力的三区域电力系统中进行评估。使用提出的方案和最新方案,分析了频率响应性能和电力系统对采样周期的容忍度。结果表明,所提出的控制方案能够在较大的采样周期内保证系统的稳定运行,从而减轻了通信网络的负担。同样,结果表明,由大的指数衰减率设计的控制器可以提供快速的频率响应,从而减轻由于风电的高穿透率而对系统频率响应的影响。

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