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首页> 外文期刊>European Journal of Control >Power Flow Control of a Doubly-Fed Induction Machine Coupled to a Flywheel
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Power Flow Control of a Doubly-Fed Induction Machine Coupled to a Flywheel

机译:与飞轮耦合的双馈感应电机的功率流控制

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We consider a doubly-fed induction machine -controlled through the rotor voltage and connected to a variable local load - that acts as an energy-switching device between a local prime mover (a flywheel) and the electrical power network. The control objective is to optimally regulate the power flow, and this is achieved by commuting between different steady-state regimes. We first show that the zero dynamics of the system is only marginally stable; thus, complicating its control via feedback linearization. Instead, we apply the energy-based Interconnection and Damping Assignment Passivity-Based Control technique that does not require stable invertibility. It is shown that the partial differential equation that appears in this method can be circumvented by fixing the desired closed-loop total energy and adding new terms to the interconnection structure. Furthermore, to obtain a globally defined control law we introduce a state-dependent damping term that has the nice interpretation of effectively decoupling the electrical and mechanical parts of the system. This results in a globally convergent controller parameterized by two degrees of freedom, which can be used to implement the power management policy. The controller is simulated and shown to work satisfactorily for various realistic load changes.
机译:我们考虑通过转子电压控制并连接到可变局部负载的双馈感应电机,该感应电机充当本地原动机(飞轮)和电力网络之间的能量切换装置。控制目标是最佳地调节功率流,这是通过在不同的稳态状态之间进行换向来实现的。我们首先表明,系统的零动力学仅在一定程度上是稳定的。因此,通过反馈线性化使其控制变得复杂。相反,我们应用了基于能量的互连和阻尼分配基于无源性的控制技术,该技术不需要稳定的可逆性。结果表明,通过固定所需的闭环总能量并将新的项添加到互连结构中,可以避免这种方法中出现的偏微分方程。此外,为了获得全局定义的控制律,我们引入了状态相关的阻尼项,该项对有效地解耦系统的电气和机械部分具有很好的解释。这导致了由两个自由度参数化的全局收敛控制器,该控制器可用于实施电源管理策略。该控制器经过仿真,显示可在各种实际负载变化下令人满意地工作。

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