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Communication time delay estimation for load frequency control in two-area power system

机译:两区域电力系统负载频率控制的通信时延估计

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摘要

Due to increased size and complexity of power system network, the stability and load frequency control (LFC) is of serious concern in a wide area monitoring system (WAMS) having obtained signals from phasor measurement unit (PMU). The quality of services (QoS) for communication infrastructure in terms of signal delay, packet loss probability, queue length, throughput is very important and must be considered carefully in the WAMS based thermal power system. However, very few studies have been presented that includes QoS for communication infrastructure in load frequency control (LFC) of power system. So this paper presents LFC for two area thermal power system based on estimated time delay and packet loss probability using the Markovian approach. The delay and packet loss probability are modeled by different math functions. Normally, frequency deviation signal is transmitted from remote terminal unit (RTU) to control center and from control center to individual control unit of plants. The delay incurred is located in the forward loop of PSO based PI/PID controller in the form of transport delay. To verify the efficacy of controller performance, the estimated constant delay and time varying delay are applied to the controller in the two area thermal thermal power system with and without governor dead band (GDB) and generation rate constraints (GRC) for various loads conditions. The study is further demonstrated for time delay, being compensated by 2nd order Pade approximation. The results show that frequency deviation is minimum in terms of stability and transient response. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于电力系统网络的规模和复杂性的增加,在已经从相量测量单元(PMU)获得信号的广域监视系统(WAMS)中,稳定性和负载频率控制(LFC)受到了严重关注。在信号延迟,丢包概率,队列长度,吞吐量方面,通信基础设施的服务质量(QoS)非常重要,在基于WAMS的热电系统中必须仔细考虑。然而,很少有研究包括电力系统的负载频率控制(LFC)中的通信基础设施的QoS。因此,本文基于估计的时延和数据包丢失概率,采用马尔可夫方法,提出了两区域火电系统的LFC。延迟和丢包概率由不同的数学函数建模。通常,频率偏差信号从远程终端单元(RTU)传输到控制中心,再从控制中心传输到工厂的各个控制单元。产生的延迟以传输延迟的形式位于基于PSO的PI / PID控制器的前向环路中。为了验证控制器性能的有效性,将估计的恒定延迟和时变延迟应用于带有和不带有调速器死区(GDB)和发电率约束(GRC)的两区域热电系统中的各种负载条件下的控制器。该研究进一步证明了时间延迟,并通过二阶Pade近似进行了补偿。结果表明,就稳定性和瞬态响应而言,频率偏差最小。 (C)2015 Elsevier B.V.保留所有权利。

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