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Design and implementation of a discrete-time H-infinity controller for uninterruptible power supply systems

机译:用于不间断电源系统的离散时间H无限控制器的设计和实现

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摘要

This study provides a digital ℋ controller design suitable for uninterruptible power supply inverters, yielding results that comply with the IEC 62040-3 Standard. An augmented state space model for the system is given, taking into account the delay from the digital implementation of the control signal, and resonant controllers that ensure asymptotic tracking of the reference and good rejection of load disturbances. It is shown a case where an ℋ optimal state feedback controller cannot provide good results because of the high control gains. To solve this problem, an ℋ suboptimal controller is proposed, taking into account a prescribed bound for the ℋ norm of the closed-loop system and a parameter for limitation of the norm of the control gain vector. This suboptimal controller provides gains that lead to suitable results, complying with the constraints from the IEC 62040-3 Standard. These results are compared with those from a widely used state feedback controller, providing superior performance, even with a much simpler design procedure. Simulation and experimental results have a good correspondence. Finally, the study illustrates that the ℋ norm of the closed-loop system can be seen as the output impedance over the frequency. From this information, using the small gain theorem, one can get the admittance value of the linear loads that preserve stability when connected to the uninterruptible power supply.
机译:这项研究提供了适用于不间断电源逆变器的数字ℋ控制器设计,其结果符合IEC 62040-3标准。考虑到来自控制信号的数字实现的延迟,给出了系统的增强状态空间模型,并提供了谐振控制器,可确保对参考信号进行渐进跟踪并很好地抑制负载干扰。结果表明,由于控制增益高,an 最优状态反馈控制器无法提供良好的结果。为了解决这个问题,考虑到闭环系统the 范数的规定界和限制极限的参数,提出了ℋ次优控制器。控制增益向量的范数。该次优控制器提供的增益可导致获得合适的结果,符合IEC 62040-3标准的限制。这些结果与来自广泛使用的状态反馈控制器的结果进行了比较,即使使用更简单的设计程序也可以提供出色的性能。仿真与实验结果具有很好的对应性。最后,研究表明,闭环系统的范数可以看作是整个频率上的输出阻抗。根据这些信息,使用小增益定理,可以得到与不间断电源连接时保持稳定性的线性负载的导纳值。

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