The index is modelled by the energy function model. It can dynamically adjust the reactive power injection and consumption to adapt to various wind output situations. Thus, the method provides accurate voltage stability assessment, with the variability and intermittency of wind energy sources.
The voltage, reactive power and active power of each bus in the system are collected for voltage stability assessment. The capacity of the wind farm is 200 MW and the power factor is set as 0.99. The power flow analysis results and voltage diatribution of the test can be demonstrated in Fig. 4, Fig. 5, respectively. Fig. 3.
2. Key performance indicators for power plant operation Monitoring the operation of generating units or groups, identifying decline in their per-formance and also the need to perform maintenance/repairs on the affected groups. In this case, we recommend the use of energy performance index (EPI) and compensated perfor-mance ratio (CPR);
Key performance indicators (KPIs) are a solid and frequently used tool for this purpose. However, the KPIs used in the wind industry are not uni ed to date, which makes comparison in the industry di cult. Further, comprehensive standards on a set of KPIs for the wind industry are missing.
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