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A multivariable new control solution for increased long lines voltage restoration stability during black startup

机译:一种多变量新控制解决方案,可在黑启动期间提高长线电压恢复的稳定性

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This paper deals with the stability problems which can determine failures of long lines voltage restoration maneuvers during black startup. Also of concern, a new control solution is shown, capable of facing the phenomena of voltage instability and self-excitation, which frequently occur in the alternator-line system. The paper presents a theoretical analysis, which reconstructs and justifies the described dynamic phenomena. It is mainly concerned with the influence of alternator and grid electrical parameters on the transient characteristics of the voltage restoration maneuver. It also describes the most significant results of a dynamic study, based on a simulation model of a generalized plant-grid system, suited to the purpose of the investigation. Specific corrective actions, to be essentially taken on the excitation control system, are furthermore outlined. In this context, the most effective solution is a multivariable control scheme, involving use of new underexcitation limits or, better yet, a superimposed centralized reactive power control. The objective is to reduce line energization extra-voltages, balancing the control efforts of all power plant units while stabilizing underexcitation operation of the generators, and preventing self-excitation wherever possible. Such a control feature could easily be implemented, in the Italian network, using the reactive power regulator (REPORT), currently widely employed for secondary voltage regulation (SVR) applications.
机译:本文讨论的稳定性问题可以确定黑启动期间长线路电压恢复动作的失败。同样值得关注的是,示出了一种新的控制解决方案,该解决方案能够应对交流发电机线路系统中经常发生的电压不稳定和自激现象。本文提出了一种理论分析,它重构并证明了所描述的动态现象。它主要涉及交流发电机和电网电气参数对电压恢复动作的暂态特性的影响。它还根据适用于研究目的的广义植物网格系统的仿真模型,描述了动态研究的最重要结果。此外,概述了必须在励磁控制系统上采取的具体纠正措施。在这种情况下,最有效的解决方案是多变量控制方案,其中涉及使用新的欠励磁限值或更好的方法是使用叠加式集中式无功功率控制。目的是减少线路通电的过电压,平衡所有发电厂单元的控制工作,同时稳定发电机的欠励磁运行,并尽可能防止自励磁。使用目前广泛用于二次电压调节(SVR)应用的无功功率调节器(REPORT),可以轻松地在意大利网络中实现这种控制功能。

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