Studied the harmonic control of the 6 kV power grid in a coal mine substation.Taking harmonic suppression and reactive power compensation into account, and complyingwith the economic and efficient technical line of th...Studied the harmonic control of the 6 kV power grid in a coal mine substation.Taking harmonic suppression and reactive power compensation into account, and complyingwith the economic and efficient technical line of the smart grid, a new hybrid activefilter was proposed and applied to the power grid in the coal mine with the advantagessuch as large capacity, low cost and low loss.In order to improve detection speed and reducethe succeeding errors to improve the filtering performance of the active power filter,the DFT (Discrete Fourier Transform) sliding window algorithm based on coordinatetransformation and improved hysteresis control method was proposed.The Matlab simulationresults show that the hybrid active filter is satisfactory, can improve the grid powerfactor and can meet the requirements of improving the power quality in the coal mine.展开更多
This paper presents a current control method for a shunt hybrid active power filter (HAPF) using recursive integral PI algorithm. The method improves the performance of the HAPF system by reducing the influence of d...This paper presents a current control method for a shunt hybrid active power filter (HAPF) using recursive integral PI algorithm. The method improves the performance of the HAPF system by reducing the influence of detection accuracy, time delay of instruction current calculation and phase displacement of output filter. Fuzzy logic based set-point weighing algorithm is combined in the control scheme to enhance its robustness and anti-interference ability. The proposed algorithm is easy to implement for engineering applications and easy to compute. Experiment results have verified the validity of the proposed controller. Furthermore, the proposed recursive integral PI algorithm can also be applied in the control of periodic current as in AC drivers.展开更多
This paper presents a new three-phase hybrid active power filter configuration that interconnects a passive high-pass filter in parallel with an active power filter and a photovoltaic system. The proposed configuratio...This paper presents a new three-phase hybrid active power filter configuration that interconnects a passive high-pass filter in parallel with an active power filter and a photovoltaic system. The proposed configuration can improves the filtering performance of the conventional active power filter, as well as simultaneously supply the power from the photovoltaic arrays to the load and utility. This paper will describe the proposed hybrid active power filter control using sliding mode with photovoltaic system. The proposed technique effectively filters harmonics under 1 kHz but also higher frequency to achieve wideband harmonics compensation. The THD of source current is reduced from 30.09% to 1.95%. The result indicates that the sliding mode controller can track the reference signals and have good dynamic characteristics.展开更多
An inverse system method based optimal control strategy was proposed for the shunt hybrid active power filter(SHAPF)to enhance its harmonic elimination performance.Based on the inverse system method,the d-axis and q-a...An inverse system method based optimal control strategy was proposed for the shunt hybrid active power filter(SHAPF)to enhance its harmonic elimination performance.Based on the inverse system method,the d-axis and q-axis current dynamics of the SHAPF system were decoupled and linearized into two pseudolinear subsystems.Then,an optimal feedback controller was designed for the pseudolinear system,and the stability condition of the resulting zero dynamics was presented.Under the control strategy,the current dynamics can asymptotically converge to their reference states and the zero dynamics can be bounded.Simulation results show that the proposed control strategy is robust against load variations and system parameter mismatches,its steady-state performance is better than that of the traditional linear control strategy.展开更多
为了降低直流微网系统中负载变化或者多源出力变化引起的功率波动,提出一种同时考虑蓄电池和超级电容荷电状态(state of charge,SOC)的混合储能协调控制策略。首先,分析直流微网系统协调控制原理,在此基础上,通过低通滤波器对所需平抑...为了降低直流微网系统中负载变化或者多源出力变化引起的功率波动,提出一种同时考虑蓄电池和超级电容荷电状态(state of charge,SOC)的混合储能协调控制策略。首先,分析直流微网系统协调控制原理,在此基础上,通过低通滤波器对所需平抑功率进行分频,低频功率由蓄电池承担,高频功率及系统开关的高频纹波由超级电容承担,根据频率响应确定了滤波器的时间常数调整原则;然后,将超级电容和蓄电池各自的SOC实时状态作为反馈观测量,根据两者的SOC状态并结合实际功率需求,将系统划分成11个工作模式,分析了不同工作模式下的功率需求,依据不同工作模式下的功率需求进行功率调整,进而实现功率二次分配;最后,将所提策略在4种典型情况下进行仿真验证,实验结果验证了该策略的有效性。展开更多
为解决超级电容能量密度小、在运行过程中荷电状态(state of charge,SOC)容易越限的问题,对传统低通滤波法进行改进,提出考虑超级电容SOC的功率分配策略。该方法依据超级电容的SOC划分5个不同的工作区域,并以超级电容的SOC作为变量,在...为解决超级电容能量密度小、在运行过程中荷电状态(state of charge,SOC)容易越限的问题,对传统低通滤波法进行改进,提出考虑超级电容SOC的功率分配策略。该方法依据超级电容的SOC划分5个不同的工作区域,并以超级电容的SOC作为变量,在不同工作区域同滤波时间常数建立相应的函数关系,之后根据SOC的变化动态调整滤波时间常数,实现蓄电池和超级电容之间功率的合理分配,保证超级电容SOC维持在合理范围内。最后,在Matlab/Simulink中搭建相关模型并仿真验证所提方案的正确性和有效性。仿真结果表明,同传统低通滤波法相比,该方法可在平抑功率波动的同时,根据超级电容的SOC合理分配超级电容和蓄电池的功率需求,使超级电容的SOC自行恢复,防止其过充过放,提高了直流微电网系统运行的经济性和稳定性。展开更多
文摘Studied the harmonic control of the 6 kV power grid in a coal mine substation.Taking harmonic suppression and reactive power compensation into account, and complyingwith the economic and efficient technical line of the smart grid, a new hybrid activefilter was proposed and applied to the power grid in the coal mine with the advantagessuch as large capacity, low cost and low loss.In order to improve detection speed and reducethe succeeding errors to improve the filtering performance of the active power filter,the DFT (Discrete Fourier Transform) sliding window algorithm based on coordinatetransformation and improved hysteresis control method was proposed.The Matlab simulationresults show that the hybrid active filter is satisfactory, can improve the grid powerfactor and can meet the requirements of improving the power quality in the coal mine.
基金supported by the National Natural Science Foundation of China (No.60774043)
文摘This paper presents a current control method for a shunt hybrid active power filter (HAPF) using recursive integral PI algorithm. The method improves the performance of the HAPF system by reducing the influence of detection accuracy, time delay of instruction current calculation and phase displacement of output filter. Fuzzy logic based set-point weighing algorithm is combined in the control scheme to enhance its robustness and anti-interference ability. The proposed algorithm is easy to implement for engineering applications and easy to compute. Experiment results have verified the validity of the proposed controller. Furthermore, the proposed recursive integral PI algorithm can also be applied in the control of periodic current as in AC drivers.
文摘This paper presents a new three-phase hybrid active power filter configuration that interconnects a passive high-pass filter in parallel with an active power filter and a photovoltaic system. The proposed configuration can improves the filtering performance of the conventional active power filter, as well as simultaneously supply the power from the photovoltaic arrays to the load and utility. This paper will describe the proposed hybrid active power filter control using sliding mode with photovoltaic system. The proposed technique effectively filters harmonics under 1 kHz but also higher frequency to achieve wideband harmonics compensation. The THD of source current is reduced from 30.09% to 1.95%. The result indicates that the sliding mode controller can track the reference signals and have good dynamic characteristics.
基金Project(61174068)supported by the National Natural Science Foundation of China
文摘An inverse system method based optimal control strategy was proposed for the shunt hybrid active power filter(SHAPF)to enhance its harmonic elimination performance.Based on the inverse system method,the d-axis and q-axis current dynamics of the SHAPF system were decoupled and linearized into two pseudolinear subsystems.Then,an optimal feedback controller was designed for the pseudolinear system,and the stability condition of the resulting zero dynamics was presented.Under the control strategy,the current dynamics can asymptotically converge to their reference states and the zero dynamics can be bounded.Simulation results show that the proposed control strategy is robust against load variations and system parameter mismatches,its steady-state performance is better than that of the traditional linear control strategy.
文摘为了降低直流微网系统中负载变化或者多源出力变化引起的功率波动,提出一种同时考虑蓄电池和超级电容荷电状态(state of charge,SOC)的混合储能协调控制策略。首先,分析直流微网系统协调控制原理,在此基础上,通过低通滤波器对所需平抑功率进行分频,低频功率由蓄电池承担,高频功率及系统开关的高频纹波由超级电容承担,根据频率响应确定了滤波器的时间常数调整原则;然后,将超级电容和蓄电池各自的SOC实时状态作为反馈观测量,根据两者的SOC状态并结合实际功率需求,将系统划分成11个工作模式,分析了不同工作模式下的功率需求,依据不同工作模式下的功率需求进行功率调整,进而实现功率二次分配;最后,将所提策略在4种典型情况下进行仿真验证,实验结果验证了该策略的有效性。
文摘为解决超级电容能量密度小、在运行过程中荷电状态(state of charge,SOC)容易越限的问题,对传统低通滤波法进行改进,提出考虑超级电容SOC的功率分配策略。该方法依据超级电容的SOC划分5个不同的工作区域,并以超级电容的SOC作为变量,在不同工作区域同滤波时间常数建立相应的函数关系,之后根据SOC的变化动态调整滤波时间常数,实现蓄电池和超级电容之间功率的合理分配,保证超级电容SOC维持在合理范围内。最后,在Matlab/Simulink中搭建相关模型并仿真验证所提方案的正确性和有效性。仿真结果表明,同传统低通滤波法相比,该方法可在平抑功率波动的同时,根据超级电容的SOC合理分配超级电容和蓄电池的功率需求,使超级电容的SOC自行恢复,防止其过充过放,提高了直流微电网系统运行的经济性和稳定性。