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Study Of Transient Stability By Transient Energy Function

机译:用暂态能量函数研究暂态稳定性

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Stability analysis programs are a primary tool used by power system planning and operating engineers to predict the response of the system to various disturbances. Important conclusions and decisions are made based on the results of stability studies. The conventional method of analyzing stability is to calculate the transient behaviour of generators due to a given disturbance. Direct methods of stability analysis identify whether or not the system will remain stable once the disturbance is removed by comparing it with a calculated threshold value. Direct methods not only avoid the time consuming solutions required in the conventional method, but also provide a quantitative measure of the degree of system stability. This additional information makes direct methods very attractive when the relative stability of different plans must be compared or when stability limits must be calculated quickly. Direct methods of transient stability analysis of a multi machine power system, using a function describing the system's transient energy, are discussed. By examining the trajectory of the disturbed system, the following fundamental questions are dealt with: the concept of a controlling unstable equilibrium point (U.E.P), the manner in which some generators tend to lose synchronism, and identifying the energy directly responsible for system separation. Resolving this issue will substantially improve transient stability analysis by direct method.
机译:稳定性分析程序是电力系统规划和运行工程师用来预测系统对各种干扰的响应的主要工具。根据稳定性研究的结果得出重要的结论和决定。分析稳定性的常规方法是计算由于给定干扰而产生的发电机的暂态行为。稳定性分析的直接方法是通过将干扰与计算出的阈值进行比较来确定一旦消除干扰,系统是否将保持稳定。直接方法不仅避免了传统方法所需的耗时解决方案,而且还提供了系统稳定性程度的定量度量。当必须比较不同计划的相对稳定性或必须快速计算稳定性极限时,这些附加信息使直接方法非常有吸引力。讨论了使用描述系统暂态能量的函数对多机电源系统暂态稳定性进行分析的直接方法。通过检查受扰系统的轨迹,可以解决以下基本问题:控制不稳定平衡点(U.E.P)的概念,某些发电机趋于失去同步的方式以及确定直接导致系统分离的能量。解决此问题将通过直接方法大大改善瞬态稳定性分析。

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