Mixed-Integer Distributed Ant Colony Optimization of Dump Load Allocation with Improved Islanded Microgrid Load Flow

Author:

Kreishan Maen Z.ORCID,Zobaa Ahmed F.ORCID

Abstract

Dump load (DL) utilization at low demand hours in highly penetrated islanded microgrid is of great importance to offer voltage and frequency regulation. Additionally, load flow (LF) convergence is vital to optimize the working states of the DL allocation problem. Hence, more analysis is necessary to highlight the significance of DL in power regulation while observing the influence of LF on solution accuracy. This article proposes two LF techniques derived from backward/forward sweep (BFS), viz., general BFS (GBFS) and improved special BFS (SBFS-II). The latter is based on global voltage shared between generating units, while the former has a more general approach by considering generating bus’s local voltage. The optimal sizing and sitting of DL with optimum droop sets are determined using the mixed-integer distributed ant colony optimization (MIDACO) with the two new LF methods. The optimization problem was formulated to minimize voltage and frequency deviations as well as power losses. The problem was validated on IEEE 69- and 118-bus systems and compared with established metaheuristics. Results show that DL allocation using MIDACO with SBFS-II and GBFS has improved the solution speed and accuracy, respectively. Furthermore, the enhanced voltage and frequency results highlight DL as an efficient power management solution.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference64 articles.

1. Review of energy management and planning of islanded microgrids;Anderson;CSEE J. Power Energy Systems,2020

2. (2018). IEEE Standard for Interconnection and Interoperability of Distributed Energy Resources with Associated Electric Power Systems (Standard No. IEEE Std 1547–2018). Interfaces Revision of IEEE Std 1547–2003).

3. Hierarchical Control of Droop-Controlled AC and DC Microgrids—A General Approach Toward Standardization;Guerrero;IEEE Trans. Ind. Electron.,2011

4. Comprehensive Control for Microgrid Autonomous Operation with Demand Response;Nisar;IEEE Trans. Smart Grid,2017

5. Penetration Rate and Effectiveness Studies of Aggregated. BESS for Frequency Regulation;Chen;IEEE Trans. Smart Grid,2016

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