首页> 外文会议>IEEE International Conference on Power and Energy >Impact of static load on voltage stability of an unbalanced distribution system
【24h】

Impact of static load on voltage stability of an unbalanced distribution system

机译:静态负荷对不平衡分布系统电压稳定性的影响

获取原文

摘要

Static load which is known for three different characteristics i.e. constant power, constant current and constant impedance shows a different voltage profile because both of their real power and reactive power vary differently as the voltage varies except for constant power. This paper will analyze the impact of each load characteristic individually and also as combination on voltage stability of an IEEE 34 Bus Distribution System by increasing the load demand, and also transient analysis i.e. creating a single phase-to-ground fault i.e. on phase a and balanced three phase fault. The most suitable load to study the voltage stability is also proposed. It was found that, with constant power loads, the reactive power demand increases significantly when load real power and reactive power increases by 25%. Constant current loads and combination loads, on the other hand, the reactive power demand increases but only slightly and the demand is even lesser when with constant impedance loads. However, as the load real power and reactive power increases by 50%, constant power loads causes voltage collapse whilst constant current loads and combination loads turn out to be the next in the order followed by constant impedance loads. In transient analysis, during the single phase fault, with combination loads, phase b voltage increases drastically but only small increment observed in phase c voltage. During the three phase fault, phase b voltage is slightly higher than phase c voltage followed by phase a voltage. As comparison to combination loads, constant power loads causes lesser three phase voltages. After the fault was cleared, a smooth voltage waveform obtained in the period of retaining back to the same pre-fault voltage, however, distortions in the voltage recovering waveform seen when dynamic load included in the system. Constant power load is found to be the suitable load to study the voltage stability.
机译:静态负载是三种不同特性的恒定负载,即恒定功率,恒定电流和恒定阻抗显示出不同的电压曲线,因为它们的实际功率和无功功率都随着电压而变化而不同的变化,除了恒定功率之外。本文将单独分析每个负载特性的影响,以及通过增加负载需求的IEEE 34总线分配系统的电压稳定性的影响,以及瞬态分析,即创建单个阶段到接地故障,即在A阶段和A阶段平衡三相故障。还提出了研究电压稳定性的最合适的负载。发现,随着恒定功率负载,当负载实力和无功功率增加25%时,无功功率需求显着增加。另一方面,恒定电流负载和组合负载,电动功率需求增加,但只有略有阻抗负载时,需求甚至较小。然而,随着负载实力和无功功率增加50%,恒定的电源负载导致电压塌陷,同时恒定电流负载和组合负载变为下一个顺序,然后是恒定阻抗负载。在瞬态分析中,在单相故障期间,通过组合负载,相位B电压急剧增加,但在相C电压下仅观察到的小增量。在三相故障期间,相B电压略高于相C电压,然后逐相电压。与组合负载的比较一样,恒定功率负载导致较小的三相电压。在清除故障后,在保持返回到相同的预故障电压的时段中获得的平滑电压波形,然而,当系统中包含的动态负载时看到的电压恢复波形中的失真。发现恒定功率负载是研究电压稳定性的合适负载。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号