Konishi Keiji, Sugitani Yoshiki, Hara Naoyuki
Department of Electrical and Information Systems, Osaka Prefecture University and 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Feb;89(2):022906. doi: 10.1103/PhysRevE.89.022906. Epub 2014 Feb 7.
This paper tackles a destabilizing problem of a direct-current (dc) bus system with constant power loads, which can be considered a fundamental problem of dc power grid networks. The present paper clarifies scenarios of the destabilization and applies the well-known delayed-feedback control to the stabilization of the destabilized bus system on the basis of nonlinear science. Further, we propose a systematic procedure for designing the delayed feedback controller. This controller can converge the bus voltage exactly on an unstable operating point without accurate information and can track it using tiny control energy even when a system parameter, such as the power consumption of the load, is slowly varied. These features demonstrate that delayed feedback control can be considered a strong candidate for solving the destabilizing problem.
本文研究了具有恒功率负载的直流(dc)母线系统的失稳问题,这可被视为直流电网网络的一个基本问题。本文阐明了失稳的情形,并基于非线性科学将著名的延迟反馈控制应用于使失稳的母线系统稳定下来。此外,我们提出了一种设计延迟反馈控制器的系统程序。该控制器能够在没有精确信息的情况下,将母线电压精确收敛到一个不稳定的工作点,并且即使当诸如负载功耗等系统参数缓慢变化时,也能够使用微小的控制能量对其进行跟踪。这些特性表明,延迟反馈控制可被视为解决失稳问题的有力候选方法。