It can be observed from Fig. 4 that the peak load demand of the system is 1500 MW at 12th hour. The next subsequent peak of 1400 MW is observed at 20th hour of the next day. In this case study, load uncertainty is introduced on the maximum side, with the upper bound established as mentioned in Eq. (18), in the absence of PV-ES.
Concentrated solar power (CSP) is a promising technology to generate electricity from solar energy. Thermal energy storage (TES) is a crucial element in CSP plants for storing surplus heat from the solar field and utilizing it when needed.
The results indicate that PV storage systems effectively mitigate system peak loads, thereby enabling conventional generators to fulfill the requisite energy demand for DA UC while maintaining the minimum contingency margin and preventing overload.
The maximum irradiance is assumed to be 220 W/m 2, at the peak sunlight hour i.e. noon. The photovoltaic (PV) power is assessed using Eq. (21) across all these irradiance scenarios. Subsequently, the mean PV scenario is generated to evaluate the energy storage (ES) contribution for the remaining hours.
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CSP systems are more environmentally friendly in regions with limited access to fresh water since they use less water to operate than conventional fossil fuel power plants [34, …
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In Case 3, the system integrates the proposed coordination based PV-storage and solves UC while managing peak demand amid increasing levels of load …
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