In a 5G mobile communication system,cell search is the initial step in establishing downlink synchronization between user equipment(UE)and base stations(BS).Primary synchronization signal(PSS)detection is a crucial pa...In a 5G mobile communication system,cell search is the initial step in establishing downlink synchronization between user equipment(UE)and base stations(BS).Primary synchronization signal(PSS)detection is a crucial part of this process,and enhancing PSS detection speed can reduce communication latency and improve overall quality.This paper proposes a fast PSS detection algorithm based on the correlation characteristics of PSS time-domain superposition signals.Conducting PSS signal correlation within a smaller range can reduce computational complexity and accelerates communication speed.Additionally,frequency offset can impact the accuracy of calculations during the PSS detection process.To address this issue,we propose applying convolutional neural networks(CNN)for frequency offset estimation of synchronization signals.By compensating for the frequency of related signals,the accuracy of PSS detection is improved.Finally,the analysis and simulation results demonstrate the effectiveness of the proposed approach.展开更多
作为抑制低频振荡最有效的手段之一,电力系统稳定器(power system stabilizer,PSS)在电力系统中得到了广泛的应用。现今国内最广泛采用的PSS是PSS2B,不过由于其自身结构问题,PSS2B对频率较低的区域间振荡模式抑制效果一般。新型多频段...作为抑制低频振荡最有效的手段之一,电力系统稳定器(power system stabilizer,PSS)在电力系统中得到了广泛的应用。现今国内最广泛采用的PSS是PSS2B,不过由于其自身结构问题,PSS2B对频率较低的区域间振荡模式抑制效果一般。新型多频段稳定器PSS4B有望解决这一问题,然而PSS4B的多参数多自由度给其参数整定带来了困难,提出了一种基于等高线控制器波特图(contoured controller bode,CCBode)的PSS4B稳定器迭代设计方法。PSS4B稳定器由带通滤波器和相位补偿器串联组成。使用空间搜索方法调整相位补偿器以确保PSS4B的相频特性被限制在可接受的范围内。CCBode曲线有助于调整带通滤波器的幅频特性,从而在较宽的频带范围内具有更好的稳定性能。对Kundur的四机两区系统的测试分析证明了该方法的有效性。展开更多
In this paper, Power System Stabilizer (PSS) and Automatic Voltage Regulator (AVR) are coordinated to improve the transient stability of generator in power system. Coordinated design problem of AVR and PSS is formulat...In this paper, Power System Stabilizer (PSS) and Automatic Voltage Regulator (AVR) are coordinated to improve the transient stability of generator in power system. Coordinated design problem of AVR and PSS is formulated as an optimization problem. Particle Swarm Optimization (PSO) technique is an advanced robust search method by the swarming or cooperative behavior of biological populations mechanism. The performance of PSO has been certified in solution of highly non-linear objectives. Thus, PSO technique has been employed to optimize the parameters of PSS and AVR in order to reduce the power system oscillations during the load changing conditions in single-machine, infinite-bus power system. The results of nonlinear simulation suggest that, by coordinated design of AVR and PSS based on PSO technique power system oscillations are exceptionally damped. Correspondingly, it’s shown that power system stability is superiorly enhanced than the uncoordinated designed of the PSS and the AVR controllers.展开更多
针对风火打捆(wind-thermal-bundled,WTB)系统在受到干扰时可能由于阻尼不足而出现的低频振荡现象以及较高的网损会导致运行成本的增加和阻碍“双碳”目标实现的问题,提出了一种电力系统稳定器(power system stabilizer,PSS)与统一潮流...针对风火打捆(wind-thermal-bundled,WTB)系统在受到干扰时可能由于阻尼不足而出现的低频振荡现象以及较高的网损会导致运行成本的增加和阻碍“双碳”目标实现的问题,提出了一种电力系统稳定器(power system stabilizer,PSS)与统一潮流控制器(unified power flow controller,UPFC)附加功率振荡阻尼控制器(power oscillation damping,POD)参数和UPFC安装位置协调优化策略方法。首先,基于Matlab构建了风火打捆外送系统和控制器模型。然后,利用多目标樽海鞘优化算法(multi-objective salp swarm algorithm,MSSA),将协调优化问题转化为多目标优化问题。目标函数设计中考虑了UPFC装置的调节特性。最后,采用IEEE 4机2区系统和16机5区系统进行多种工况下的仿真。仿真结果显示,协调优化后的控制器可以提高系统阻尼,维持发电机转速的稳定,抑制低频振荡引起的系统有功、电压等的波动,同时降低了系统的有功网损,提高了系统稳定性和运行经济性。MSSA在工程问题上的应用得到了补充。展开更多
HVDC (High Voltage Direct Current) systems are increasingly being applied to improve power system operation and controllability. However, inappropriate setting of HVDC controller may have a detriment effect on the sys...HVDC (High Voltage Direct Current) systems are increasingly being applied to improve power system operation and controllability. However, inappropriate setting of HVDC controller may have a detriment effect on the system performance. Generally, PSS (Power System Stabilizer) is known as a simple concept, easy to perform, and computationally effective to enhance damping of power system oscillations through excitation control of synchronous generator. This paper examines the effectiveness of the PSS to enhance the dynamic performance of AC-DC power systems and to compensate the negative damping of HVDC system. The dynamic performance is evaluated by examining the system response to various disturbances. In order to ensure the reliability of the simulation test results as well as the performance of the PSS, detailed HVDC modeling is adopted using SimPowerSystems toolbox in the MATLAB, and some important conclusions are drawn.展开更多
In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been ...In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been presented to improve the power system stability. Single machine infinite bus (SMIB) system with SVC located at the terminal of generator has been considered to evaluate the proposed SVC and PSS controllers. The coefficients of PSS and SVC controller have been optimized by Chaos, PSO and SFL algorithms. Fi-nally the system with proposed controllers is simulated for the special disturbance in input power of genera-tor, and then the dynamic responses of generator have been presented. The simulation results show that the system composed with recommended controller has outstanding operation in fast damping of oscillations of power system and describes an application of Chaos, PSO and SFL algorithms to the problem of designing a Lead-Lag controller used in PSS and SVC in power system.展开更多
For solving the dynamic instability problem of Yunnan Provincial Power System (YNPS) and the South China Interconnected Power System (SCIPS), Lubuge Hydropower Station was chosen to install Power System Stabilizer (PS...For solving the dynamic instability problem of Yunnan Provincial Power System (YNPS) and the South China Interconnected Power System (SCIPS), Lubuge Hydropower Station was chosen to install Power System Stabilizer (PSS). This paper introduces the principles and methods of parameter selection for PSS, in addition to field test. The test results show that the PSS installed can significantly improve the system damping.展开更多
文摘In a 5G mobile communication system,cell search is the initial step in establishing downlink synchronization between user equipment(UE)and base stations(BS).Primary synchronization signal(PSS)detection is a crucial part of this process,and enhancing PSS detection speed can reduce communication latency and improve overall quality.This paper proposes a fast PSS detection algorithm based on the correlation characteristics of PSS time-domain superposition signals.Conducting PSS signal correlation within a smaller range can reduce computational complexity and accelerates communication speed.Additionally,frequency offset can impact the accuracy of calculations during the PSS detection process.To address this issue,we propose applying convolutional neural networks(CNN)for frequency offset estimation of synchronization signals.By compensating for the frequency of related signals,the accuracy of PSS detection is improved.Finally,the analysis and simulation results demonstrate the effectiveness of the proposed approach.
文摘作为抑制低频振荡最有效的手段之一,电力系统稳定器(power system stabilizer,PSS)在电力系统中得到了广泛的应用。现今国内最广泛采用的PSS是PSS2B,不过由于其自身结构问题,PSS2B对频率较低的区域间振荡模式抑制效果一般。新型多频段稳定器PSS4B有望解决这一问题,然而PSS4B的多参数多自由度给其参数整定带来了困难,提出了一种基于等高线控制器波特图(contoured controller bode,CCBode)的PSS4B稳定器迭代设计方法。PSS4B稳定器由带通滤波器和相位补偿器串联组成。使用空间搜索方法调整相位补偿器以确保PSS4B的相频特性被限制在可接受的范围内。CCBode曲线有助于调整带通滤波器的幅频特性,从而在较宽的频带范围内具有更好的稳定性能。对Kundur的四机两区系统的测试分析证明了该方法的有效性。
文摘In this paper, Power System Stabilizer (PSS) and Automatic Voltage Regulator (AVR) are coordinated to improve the transient stability of generator in power system. Coordinated design problem of AVR and PSS is formulated as an optimization problem. Particle Swarm Optimization (PSO) technique is an advanced robust search method by the swarming or cooperative behavior of biological populations mechanism. The performance of PSO has been certified in solution of highly non-linear objectives. Thus, PSO technique has been employed to optimize the parameters of PSS and AVR in order to reduce the power system oscillations during the load changing conditions in single-machine, infinite-bus power system. The results of nonlinear simulation suggest that, by coordinated design of AVR and PSS based on PSO technique power system oscillations are exceptionally damped. Correspondingly, it’s shown that power system stability is superiorly enhanced than the uncoordinated designed of the PSS and the AVR controllers.
文摘HVDC (High Voltage Direct Current) systems are increasingly being applied to improve power system operation and controllability. However, inappropriate setting of HVDC controller may have a detriment effect on the system performance. Generally, PSS (Power System Stabilizer) is known as a simple concept, easy to perform, and computationally effective to enhance damping of power system oscillations through excitation control of synchronous generator. This paper examines the effectiveness of the PSS to enhance the dynamic performance of AC-DC power systems and to compensate the negative damping of HVDC system. The dynamic performance is evaluated by examining the system response to various disturbances. In order to ensure the reliability of the simulation test results as well as the performance of the PSS, detailed HVDC modeling is adopted using SimPowerSystems toolbox in the MATLAB, and some important conclusions are drawn.
文摘In this paper, the Authors present the designing of power system stabilizer (PSS) and static var compensator (SVC) based on chaos, particle swarm optimization (PSO) and shuffled frog leaping (SFL) Algorithms has been presented to improve the power system stability. Single machine infinite bus (SMIB) system with SVC located at the terminal of generator has been considered to evaluate the proposed SVC and PSS controllers. The coefficients of PSS and SVC controller have been optimized by Chaos, PSO and SFL algorithms. Fi-nally the system with proposed controllers is simulated for the special disturbance in input power of genera-tor, and then the dynamic responses of generator have been presented. The simulation results show that the system composed with recommended controller has outstanding operation in fast damping of oscillations of power system and describes an application of Chaos, PSO and SFL algorithms to the problem of designing a Lead-Lag controller used in PSS and SVC in power system.
文摘For solving the dynamic instability problem of Yunnan Provincial Power System (YNPS) and the South China Interconnected Power System (SCIPS), Lubuge Hydropower Station was chosen to install Power System Stabilizer (PSS). This paper introduces the principles and methods of parameter selection for PSS, in addition to field test. The test results show that the PSS installed can significantly improve the system damping.