自激感应发电机在低功率多源远程站点中的集成

R. Romary, R. Pusca, E. Touti, V. Cazac, P. Livinti, I. Nuca
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引用次数: 0

摘要

本文针对自励感应发电机作为集成电源在低功率多源远程站点中的应用,提出了一种综合分析和测试方法。针对其集成,定义了可靠的方案,并在实验室试验台进行了多次试验,以评估感应发电机的稳定性。分析确定了每台机器的优先运行区域,并通过对感应发电机自主模式和多源直流母线连接模式的对比研究,揭示了瞬态电压稳定性的演变。为了避免电压崩溃和机器的退磁,有必要确定其参数,并确定其工作区域,以获得最佳稳定性和负载变化的极限。本文给出了给出工作区域的解析模型,并通过实验证明了多源自激感应发电机的负荷变化区间具有显著的激励作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of a Self-Excited Induction Generator in a Low Power Multisource Remote Site
In this paper a comprehensive analysis and a testing process are proposed for investigation of a self-excited induction generator working as integrated source in a low power multisource remote site. For its integration, a reliable scheme is defined and several tests are carried out with a laboratory test bench to evaluate the induction generator stability. The analysis defines a preferential operation area for each machine and the testing process reveals the evolution of the voltage stability during transients by a comparative study between autonomous mode and a mode where the induction generator is connected to a multisource DC bus. In order to avoid the voltage collapsing and the demagnetization of the machine it is necessary to identify its parameters and to define its operating working area where the best stability can be obtained as well as the limits of the load variation. The analytical model used to provide the working area is presented in the paper and also the experimental results which show the significant incensement of the load variation interval for the self-excited induction generator connected to a multisource site.
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