Energy Generation and Distribution via Distributed Coordination: Case Studies
Hyo-Sung Ahn, Byeong-Yeon Kim

TL;DR
This paper presents case studies of the DisCoord algorithms for energy generation and distribution, analyzing their performance across various scenarios through simulations to evaluate their effectiveness.
Contribution
It provides a concise summary of DisCoord algorithms and evaluates their performance in different scenarios via numerical simulations.
Findings
DisCoord algorithms effectively handle multiple energy distribution scenarios.
Simulation results demonstrate robustness of the algorithms.
Algorithms show potential for practical energy management applications.
Abstract
This paper presents case studies of the algorithms called "energy generation and distribution via distributed coordination", which was proposed in [1-4]. For a convenience, we call "energy generation and distribution via distributed coordination" as "DisCoord Algorithms". After concisely summarizing the "DisCoord Algorithms" in compact forms, we will list several scenarios for numerical tests. Then, while analyzing the simulation results, we will discuss the capability of the algorithms in handling the various cases.
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Taxonomy
TopicsDistributed Control Multi-Agent Systems · Energy Efficient Wireless Sensor Networks · Neural Networks Stability and Synchronization
