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首页> 外文期刊>IEEE Transactions on Industry Applications >A Battery-Less Photovoltaic Water-Pumping System With Low Decoupling Capacitance
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A Battery-Less Photovoltaic Water-Pumping System With Low Decoupling Capacitance

机译:一种较少的电池光伏水泵系统,具有低分离电容

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摘要

A two-stage photovoltaic water-pumping system architecture is presented in this paper. In contrast with other alternatives available in the literature, the electronic drive does not exploit batteries to accomplish energy decoupling, neither large electrolytic capacitors in between stages. Although these two design decisions, respectively, minimize environmental impacts and increase the converter's expected lifetime, they also bring about considerable control difficulties. More specifically, the dc-link stiffness is reduced, and thus, large voltage oscillations may occur. In order to overcome this problem, a nonlinear controller interconnection between the individual compensator of each stage is created to account for the low capacitance. Simulations and experimental results demonstrate the effectiveness of the method in stabilizing the dc-link voltage under sudden solar irradiation changes. The final converter was deployed in a remote rural community in Guinea-Bissau for crop irrigation purposes. Despite the harsh conditions such as high temperatures and sea breeze, in situ results were satisfactory and validated the system robustness.
机译:本文提出了一种两级光伏水泵系统架构。与文献中的其他替代品相比,电子驱动器不会利用电池来实现能量去耦,既不是阶段之间的大型电解电容器。虽然这两个设计决策,分别最大限度地减少了环境影响并增加了转换器的预期寿命,但它们也带来了相当大的控制困难。更具体地,降低DC连杆刚度,因此可能发生大电压振荡。为了克服该问题,创建每个级的各个补偿器之间的非线性控制器互连以考虑低电容。仿真和实验结果表明了该方法在突然太阳照射变化下稳定直流链路电压的有效性。最终转换器部署在几内亚比绍的遥远农村社区,以进行作物灌溉目的。尽管诸如高温和海风等苛刻的条件,但原位结果令人满意并验证了系统的鲁棒性。

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