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Utility interactive power conditioning systems islanding problem solutions.

机译:公用事业交互式功率调节系统孤岛问题解决方案。

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This dissertation deals with the islanding problem of single-phase, self-commutated utility interactive inverters with the direct feedback loops. The objectives of the study and research are to get a complete understanding of the islanding problem and to find a solution for the problem. That is to give the utility interactive inverters the ability of preventing the is landing operation mode.; In this dissertation, the modeling and simulation work for the utility interactive inverter with the direct feedback loops has been considered. The inverter's closed-loop transfer function and frequency responses in different situations have been established. The dynamic characteristics of inverters in the islanding mode have been discussed in some detail.; Two solutions to the islanding problem are introduced in this dissertation. The first solution consists of modifying the feedback and control system of the inverters with direct feedback loops. The inverters after modification have a stable, unique output frequency in the normal operation mode. After the utility power sources are separated from the distribution line and the islanding occurs, the inverter output frequency will be removed from the nominal frequency and be out of the limit rapidly, then the built-in under/over frequency protection system will shut off the inverter.; The second solution is called differential impedance protection. Before and after the continuous islanding occurs, the values of inverter output voltage, current and frequency only change a little, but the ratio dV/dI, called differential impedance, will change significantly. The detailed analytical verification is given. A circuit to detect the differential impedance change has been designed. The principle of circuitry is introduced, too.
机译:本文研究了具有直接反馈回路的单相,自换相公用事业交互式逆变器的孤岛问题。研究和研究的目的是全面了解孤岛问题并找到解决方案。那就是给公用事业交互式逆变器提供防止登陆运行模式的能力。本文考虑了具有直接反馈回路的公用事业交互式逆变器的建模和仿真工作。已经建立了变频器在不同情况下的闭环传递函数和频率响应。已经详细讨论了孤岛模式下的逆变器动态特性。本文针对孤岛问题提出了两种解决方案。第一个解决方案包括使用直接反馈回路修改逆变器的反馈和控制系统。修改后的逆变器在正常运行模式下具有稳定的唯一输出频率。在将公用电源与配电线分开并发生孤岛之后,逆变器的输出频率将从标称频率中去除,并迅速超出极限,然后内置的过低/过高频率保护系统将关闭变频器。逆变器。第二种解决方案称为差分阻抗保护。在连续孤岛发生之前和之后,逆变器输出电压,电流和频率的值仅发生少许变化,但是比率dV / dI(称为差分阻抗)将发生显着变化。给出了详细的分析验证。已经设计了检测差分阻抗变化的电路。也介绍了电路原理。

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