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A generalized passivity-based control approach for power compensation in distribution systems using electrical energy storage systems

机译:一种基于无源性的通用控制方法,用于使用电能存储系统的配电系统中的功率补偿

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This paper presents a generalized interconnection and damping assignment passivity-based control (IDA-PBC) for electric energy storage systems (EESS) such as: superconducting magnetic energy storage (SMES) and supercapacitor energy storage (SCES). A general framework is proposed to represent the dynamical behavior of EESS interconnected to the electrical distribution system through forced commutated power electronic converters. A voltage source converter (VSC) and a pulse-width modulated current source converter (PWM-CSC) are used to integrate SCES and SMES systems to the electrical power systems respectively. The proposed control strategy allows active and reactive power interchange between the EESS and electric distribution grids independently, guaranteeing globally asymptotically convergence in the sense of Lyapunov via Hamiltonian formulation. Simulation results show the effectiveness and robustness of the generalized IDA-PBC to operate EESS as active and reactive power compensator in order to improve operative conditions in power distribution grids under balanced and unbalanced conditions.
机译:本文介绍了一种用于电能存储系统(EESS)的通用互连和阻尼分配基于无源性的控制(IDA-PBC),例如:超导磁能存储(SMES)和超级电容器储能(SCES)。提出了一个通用框架来表示通过强制换向电力电子转换器互连到配电系统的EESS的动态行为。电压源转换器(VSC)和脉宽调制电流源转换器(PWM-CSC)用于将SCES和SMES系统分别集成到电力系统中。所提出的控制策略允许EESS与配电网之间的有功和无功功率独立交换,通过哈密顿公式,在Lyapunov的意义上保证全局渐近收敛。仿真结果表明,通用IDA-PBC可以有效地和稳定地将EESS用作有功和无功功率补偿器,从而改善配电网在平衡和不平衡条件下的运行条件。

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