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Distributed filtering of high harmonics in Smart Grid

机译:智能电网中的高次谐波分布式滤波

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摘要

Currently great attention is paid to more efficient use of electric energy and considerable significance is attached to increase in power quality, in particular, by decreasing high harmonics in supply voltage. It seems reasonable to apply Smart Grid technologies, which imply continuous control and measurement of network parameters by the sensors of current, voltage, frequency, etc., and control of network operation on the basis of the data obtained. We suggest using smart meters of high harmonic energy and distributed filtering that provide minimum network resistance for the fundamental harmonic. The reactive components are used to tune the network. These are capacitances of network, inductances of transformers, capacitances of synchronous compensators and specially applied regulated inductances and capacitances. Information on network tuning to resonant conditions with fundamental harmonic comes from phase meters and high harmonic energy meters. The paper shows the necessity of measuring separately fundamental and high harmonic energy. Measurement of high harmonic energy and settlement of legal issues related to payment for this energy should encourage power supply companies and consumers to take technical and organizational measures to decrease high harmonic level in the network. These measures should lead to the improvement of the supply network voltage waveform which will enhance the efficiency of electric energy use by consumers.
机译:当前,人们更加关注电能的更有效利用,并且,特别是通过降低电源电压中的高次谐波,电能质量的提高也具有重要意义。应用智能电网技术似乎是合理的,它意味着通过电流,电压,频率等传感器连续控制和测量网络参数,并根据获得的数据来控制网络运行。我们建议使用高谐波能量的智能电表和分布式滤波,以为基波谐波提供最小的网络电阻。电抗组件用于调整网络。这些是网络的电容,变压器的电感,同步补偿器的电容以及专门应用的经过调节的电感和电容。关于网络调谐到具有基本谐波的谐振条件的信息来自相位计和高谐波能量计。本文显示了分别测量基波和高谐波能量的必要性。高谐波能量的测量以及与该能量支付有关的法律问题的解决应鼓励供电公司和消费者采取技术和组织措施以降低网络中的高谐波水平。这些措施应导致供电网络电压波形的改善,这将提高消费者的电能使用效率。

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