Demand-Side-Management-for-Techno-Economic-Evaluation-of-Hyb
Demand Side Management(DSM) for Techno Economic Evaluation of Hybrid Energy Systems
The codes demonstate the DSM strategy employed in this article, "https://doi.org/10.3390/electronics11020204"
Definition of terms
P(t), P(w), P1(t), univ,P(ren), and lt represents PV power, wind power, load, inverter efficiency, surplus renewable energy, and load shift at time, t, respectively
The DSM code
The DSM code describes the section 6 in this article: https://doi.org/10.3390/electronics11020204
Cite as:
if you use this DSM strategy, kindly cite as:
Hammed Olabisi, Abdullah M. Al-Shaalan, Hassan M. H. Farh, and Abdullrahman A. Al-Shamma’a. 2022. "Techno-Economic Evaluation of Hybrid Energy Systems Using Artificial Ecosystem-Based Optimization with Demand Side Management" Electronics 11, no. 2: 204. https://doi.org/10.3390/electronics11020204
Code usage
This DSM model is compatible and can be used with the techno-economic evaluation of hybrid energy system developed in:
Cite As
Hammed Omotoso (2025). Demand-Side-Management-for-Techno-Economic-Evaluation-of-Hyb (https://github.com/medolab/Demand-Side-Management-for-Techno-Economic-Evaluation-of-Hybrid-Energy-Systems-/releases/tag/v1.0.0), GitHub. Retrieved .
MATLAB Release Compatibility
Platform Compatibility
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| Version | Published | Release Notes | |
|---|---|---|---|
| 1.0.0 |
