研究目的
To present a new mathematical framework for modeling, analysis, and control of a stand-alone PV system with emphasis on an existing system. The PV system considered in this paper is a conceptualization of those installed in an experimental greenhouse. A characteristic of this experimental PV system is that its panel angle can be switched in a discrete manner by consuming stored energy, potentially serving as a simplified and more efficient alternative to continuous tracking systems.
研究成果
The paper demonstrates that the stochastic differential equation is well posed and that the HJBQVIs admit a unique viscosity solution. A finite-difference scheme is proposed for the numerical discretization of HJBQVIs. A demonstrative computational example of the HJBQVIs, with emphasis on a stand-alone experimental system, is finally presented with practical implications for its cost-effective operation.
研究不足
The model parameters would depend on the location. The model does not directly consider the energy dynamics in the PV system; instead, it is considered in the performance index to be maximized.