现场应用动态无功补偿技术后,网络损耗有所减小,发电机输出功率大为降低,达到了节能降耗的目的。
After the applying of the technology, the network loss is decreased and the output power of the generator is lowered greatly, and energy saving with consumption declining is achieved.
文章提出了将线性发电机(LG)并入现有SCM以提高输出功率、改善功率因数和测量系统的可行性,并在山梨磁悬浮试验线进行了试验。
We studied the feasibility of a linear generator (LG) that is integrated into an existing SCM, improved the output, power factor and measuring system, and tested it on the Yamanashi Maglev test line.
控制发电机在不同负载条件下从随机变化的风中最有效地获得输出功率。
The generator was controlled to capture maximum power from the changing wind with maximum efficiency under different load conditions.
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