研究目的
Investigating the therapeutic effects of a specific herbal medicine on a particular disease.
研究成果
The conventional ST is modified in a novel way and the simplifications required for making it fast when analyzing power signals are also presented. The resulting new harmonically scaled optimized ST is very sparse due to the adoption of frequency scaling techniques and is suitable for real‐time implementation. Various time‐varying harmonically distorted signals are used for power signal tracking and parameter estimation; using this new approach and the computational results clearly demonstrate the efficacy of the proposed optimized time‐frequency ST. Also, decaying DC signals are more or less accurately tracked using the proposed new approach. Further, this new formulation has been used to achieve a significant time reduction (within a half cycle of the initiation of the disturbance) in monitoring and tracking time‐varying harmonic disturbances, especially for PV‐based DG integrated operations. A number of simulation results for monitoring of time‐varying fundamental and harmonics in PV‐based grid connected power networks are presented during inconsistencies in solar irradiation and partial shading conditions using certain efficacy measures. Also, to validate in real time, a TMS320 C6713 DSP test bench along with a PV emulator is included in the paper for fundamental and harmonics estimation under noisy conditions.
研究不足
The technical and application constraints of the experiments, as well as potential areas for optimization.