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首页> 外文期刊>IEEE Transactions on Industrial Electronics >One-Dimensional Optimization for Proportional–Resonant Controller Design Against the Change in Source Impedance and Solar Irradiation in PV Systems
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One-Dimensional Optimization for Proportional–Resonant Controller Design Against the Change in Source Impedance and Solar Irradiation in PV Systems

机译:比例谐振控制器设计的一维优化,可抵抗光伏系统中源阻抗和太阳辐射的变化

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摘要

The variation in source impedance and solar irradiation effects on photovoltaic (PV) system control performance is investigated. A proportional–resonant (PR) controller in a stationary frame in place of a proportional–integral controller in a synchronous frame was adopted to modulate a single-phase grid-tied inverter for PV systems. Although the PR controllers have gained some momentum lately due to advantages such as instantaneous tracking capability and low-cost computational resources, the tracking performance may decline due to changes in source impedance and solar irradiation where the conventional PR design rule is void. To adapt PR controllers over diverse operating conditions without incurring excessive tracking error, a one-dimensional optimization (ODO) algorithm that dictates the quality of the tracking performance is proposed to search for an appropriate factor $chi$ between the real part of dominant and nondominant eigenvalues for the PV systems. The control gains of the PR controller can be then altered in light of the optimal $chi$ through a simple algebraic conversion. The experimental results confirm the performance of the proposed strategy.
机译:研究了源阻抗和太阳辐射对光伏(PV)系统控制性能的影响。采用固定框架中的比例共振(PR)控制器代替同步框架中的比例积分控制器来调制光伏系统的单相并网逆变器。尽管PR控制器由于诸如瞬时跟踪功能和低成本计算资源之类的优势而在最近获得了一些动力,但是由于常规PR设计规则无效的源阻抗和太阳辐射的变化,跟踪性能可能会下降。为了使PR控制器适应各种运行条件而不会产生过多的跟踪误差,提出了一种指示跟踪性能质量的一维优化(ODO)算法,以在显性和非显性的实部之间寻找合适的因数$ chi $光伏系统的特征值。然后可以通过简单的代数转换根据最佳$ chi $来更改PR控制器的控制增益。实验结果证实了所提出策略的性能。

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