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Single Phase Solar Inverter with Inertia Emulation

机译:具有惯性仿真的单相太阳能逆变器

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Synchronous machines or alternators form the core of the power generation capability in the traditional electrical power system. They have a rotating flywheel which enables them to impart stability to the grid. With the increasing penetration of distributed renewable energy sources, DC to AC conversion systems has gained huge popularity. Proper stable operation of the electrical grid depends on the fact that the alternator has a rotating flywheel(mechanical inertia), which can quickly absorb or release energy in a controlled manner. The flywheel is not available for a traditional DC to AC converter i.e. inverter used in renewable energy conversions. This is where the idea of an inverter with emulated inertia can play a significant role. It can convert energy efficiently from DC sources to AC for further transmission of power through the grid and still retain all the features of a traditional alternator that help in stabilising the grid. In this paper, focus has been put on single phase inverters as single phase inverters on home rooftops form a huge segment of the future renewable energy generation prospect. Moreover, renewable energy sources always have an element of unpredictability associated with it. Injection of this unpredictable amount of power into the grid makes the grid more unstable. So, with steady increase in the use of inverters powered by renewable energy sources, such inertia emulation ability is essential for grid-connected inverters to keep the stability of the grid intact, especially in rapidly changing atmospheric conditions where the amount of available renewable energy keeps varying. To solve this problem, the idea of single phase solar inverter with inertia emulation is proposed here. Calculations have been shown here to estimate the capacity of energy storage required for proper operation. The proposed inverter is controlled through synchronous reference frame based control method instead of popularly used hysteresis based methods, which allows for superior quality power to be injected to the grid.
机译:同步电机或交流发电机构成了传统电力系统中发电能力的核心。它们具有旋转的飞轮,使它们能够为电网赋予稳定性。随着分布式可再生能源的日益普及,DC到AC转换系统获得了极大的普及。电网的正确稳定运行取决于交流发电机具有旋转飞轮(机械惯性)的事实,该飞轮可以以受控方式快速吸收或释放能量。飞轮不适用于传统的DC到AC转换器,即可再生能源转换中使用的逆变器。在这里,具有仿真惯量的逆变器的想法可以发挥重要作用。它可以将电能有效地从直流电源转换为交流电源,以进一步通过电网传输电力,并且仍然保留了传统交流发电机的所有功能,有助于稳定电网。本文将重点放在单相逆变器上,因为家用屋顶上的单相逆变器构成了未来可再生能源发电前景的巨大部分。此外,可再生能源总是具有不可预测的因素。将这种不可预测的电量注入电网会使电网更加不稳定。因此,随着可再生能源驱动的逆变器的使用不断增加,这种惯性仿真能力对于并网逆变器保持电网的稳定性至关重要,尤其是在迅速变化的大气条件下,在这种情况下,可再生能源的数量一直保持不变。变化。为了解决这个问题,这里提出了具有惯性仿真的单相太阳能逆变器的思想。此处已显示计算结果,以估算正常运行所需的能量存储容量。所建议的逆变器通过基于同步参考帧的控制方法进行控制,而不是通过常用的基于磁滞的方法进行控制,从而可以向电网注入优质电能。

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