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Wind plant interaction with series-compensated power systems.

机译:风电厂与串联补偿电力系统的相互作用。

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摘要

Wind power based generation has been rapidly growing world-wide during the recent past. In order to transmit large amounts of wind power over long distances, system planners may often add series compensation to existing transmission lines owing to several benefits such as improved steady-state power transfer limit, improved transient stability, and efficient utilization of transmission infrastructure. Application of series capacitors has posed resonant interaction concerns such as through subsynchronous resonance (SSR) with conventional turbine-generators. Wind turbine-generators may also be susceptible to such resonant interactions. However, not much information is available in literature and even engineering standards are yet to address these issues. The motivation problem for this research is based on an actual system switching event that resulted in undamped oscillations in a 345-kV series-compensated, typical ring-bus power system configuration.;Based on time-domain ATP (Alternative Transients Program) modeling, simulations and analysis of system event records, the occurrence of subsynchronous interactions within the existing 345-kV series-compensated power system has been investigated. Effects of various small-signal and large-signal power system disturbances with both identical and non-identical wind turbine parameters (such as with a statistical-spread) has been evaluated.;Effect of parameter variations on subsynchronous oscillations has been quantified using 3D-DFT plots and the oscillations have been identified as due to electrical self-excitation effects, rather than torsional interaction. Further, the generator no-load reactance and the rotor-side converter inner-loop controller gains have been identified as bearing maximum sensitivity to either damping or exacerbating the self-excited oscillations. A higher-order spectral analysis method based on modified Prony estimation has been successfully applied to the field records identifying dominant 9.79 Hz subsynchronous oscillations. Recommendations have been made for exploring countermeasures.
机译:在最近的几年中,基于风能的发电在世界范围内迅速发展。为了在远距离上传输大量风能,系统规划人员通常会因以下好处而增加对现有输电线路的串联补偿:改善稳态功率传输限制,改善暂态稳定性以及有效利用输电基础设施。串联电容器的应用引起了共振相互作用的问题,例如通过与常规涡轮发电机的次同步共振(SSR)。风力涡轮发电机也可能易于发生这种共振相互作用。但是,文献中没有足够的信息,甚至工程标准都无法解决这些问题。这项研究的动机问题基于一个实际的系统切换事件,该事件导致在345kV串联补偿的典型环形总线电源系统配置中产生无阻尼的振荡;基于时域ATP(Alternative Transients Program)的建模,通过对系统事件记录的仿真和分析,研究了现有345 kV串联补偿电力系统中次同步相互作用的发生。评估了具有相同和不同风力涡轮机参数(例如具有统计分布)的各种小信号和大信号电力系统扰动的影响;已使用3D量化了参数变化对次同步振荡的影响DFT图和振荡已确定是由于电自激效应而不是扭转相互作用引起的。此外,发电机空载电抗和转子侧变流器内环控制器增益已被确定为对阻尼或加剧自激振荡具有最大的敏感性。基于改进的Prony估计的高阶频谱分析方法已成功应用于识别主要9.79 Hz次同步振荡的现场记录。已经提出了探索对策的建议。

著录项

  • 作者

    Ramamurthy, Jayanth R.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Alternative Energy.;Energy.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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