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Large system interaction characteristics of superconducting generators

机译:超导发电机的大型系统相互作用特性

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摘要

Differences between superconducting generators and conventional machines are identified, and ways in which superconducting machines will offer both advantages and problems are shown. Superconducting generators will have system interaction characteristics, somewhat different from those of their conventional counterparts. In general, superconducting machines will improve characteristics of the power system; their low reactances and long time constants will improve transient stability and voltage regulation. However, these also produce large fault currents and torques. If care is not taken, these machines may product interesting and perhaps destructive resonant effects on shaft lines. The author builds simple models that allow several important system integration characteristics of synchronous machines, including the differences between conventional and superconducting machines, to be discussed and understood. These include reactive power capability, transient stability, damping, voltage control, fault currents, and torques.
机译:确定了超导发电机与常规电机之间的差异,并显示了超导电机将同时提供优点和问题的方式。超导发电机将具有系统交互特性,与传统的发电机有些不同。通常,超导机器将改善电力系统的特性;它们的低电抗和较长的时间常数将改善瞬态稳定性和电压调节。但是,这些也会产生较大的故障电流和转矩。如果不小心,这些机器可能会对轴产生有趣的甚至破坏性的共振效应。作者建立了简单的模型,从而可以讨论和理解同步电机的几个重要的系统集成特性,包括常规电机和超导电机之间的差异。其中包括无功功率能力,暂态稳定性,阻尼,电压控制,故障电流和扭矩。

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