并联混合有源滤波器哈密顿系统建模及无源控制  被引量:10

Hamiltonian modeling and passivity-based control of shunt hybrid active power filter

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作  者:鲁伟[1] 徐长波[1] 李春文[1] 

机构地区:[1]清华大学自动化系,北京100084

出  处:《控制理论与应用》2012年第11期1397-1402,共6页Control Theory & Applications

基  金:国家自然科学基金资助项目(61174068)

摘  要:并联混合有源滤波器(SHAPF)的控制策略是决定其稳定性和谐波治理效果的关键因素之一,利用SHAPF自身的无源性设计控制器可以取得比常规控制器更好的控制效果.首先建立了SHAPF端口受控哈密顿系统模型,然后基于互联和阻尼配置无源控制方法,提出了一种新的SHAPF非线性控制策略,从理论上保证了闭环系统的渐进稳定.最后仿真实验证明了该控制策略能够有效消除电网中的谐波电流,与传统线性二次型调节器(LQR)相比,该控制策略具有更好的稳态补偿效果和对负载变化的干扰抑制能力.A good control strategy is crucial to the stability and desired performance of the shunt hybrid active power filter (SHAPF). Based on the passivity of the SHAPE a nonlinear controller is designed that outperforms the traditional controllers. Firstly, a port-controlled Hamiltonian system model is built for the SHAPE and then a novel control strategy of the SHAPF is developed by using the passive controller design method through interconnection and damping- assignment. Theoretically, the proposed control strategy can asymptotically stabilize the close-loop system. Simulation results show higher harmonic elimination and robust performances are achieved in comparison with the linear quadratic regulator (LQR).

关 键 词:谐波治理 混合有源滤波器 哈密顿 无源控制 渐进稳定 

分 类 号:TM761[电气工程—电力系统及自动化]

 

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