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"Backtracking Search Algorithm for Microgrid Energy Scheduling in Day A" by Md Abu Zardar, Md Shafiullah et al.

Energy utilization and cost minimization of renewable energy microgrids (REM) is an essential and difficult optimization challenge. However, most works have not considered heuristic and non-heuristic algorithms of REM complex equality and inequality requirements. In response, a single-objective optimization model for REM scheduling is developed and presented in this study. This microgrid model uses a very efficient and well-liked meta-heuristic optimization method called the Backtracking Search Algorithm (BSA). The BSA method locates a solution by constructing a solution piece by piece, adding levels over time, and using recursive calling. It is a method of large-scale search, and unlike other meta-heuristic approaches, it has a different model structure. Therefore, the proposed solution strategy may provide desirable outcomes with sufficient computational effort. Furthermore, in this research, the suggested process evaluates the consequences of another well-known meta-heuristic, parti ....

Backtracking Search Algorithm , Backtracking Search Algorithms , Day Ahead Market , Distributed Generators , Energy Scheduling , Eta Heuristic , Renewable Energy ,

Nepra's Public Hearing on September 27 to Decide Rate to Buy Electricity from Solar-Powered Consumers

Nepra's Public Hearing on September 27 to Decide Rate to Buy Electricity from Solar-Powered Consumers
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Renewable Energy Distributed Generation , Power Regulatory Authority , Bank Debit , Energy Purchase Agreement , National Electric , Net Metering Regulation , Distributed Generators , Net Metering , Implementation Agreement , Distributed Generator , Net Metering Consumer ,

"Reinforcement of Power System Performance Through Optimal Allotment of" by Sohrab Mirsaeidi, Shangru Li et al.

Owing to the acute shortage of electric power in the majority of countries, short-term measures such as installation of Distributed Generators (DGs) have attracted much attention in recent decades. Employment of DGs can provide numerous advantages for the power systems through reduction of losses, escalation of the voltage profile, as well as mitigation of pollutant emissions. However, in case they are not optimally allotted, they may even lead to aggravation of the network operation from different aspects. The aim of this paper is to explore the optimal size and location of DGs using metaheuristic optimization algorithms so that the network performance is enhanced. The salient feature of the proposed strategy compared to the previous works is that it contemplates optimal allotment of DGs under various objectives, i.e. minimization of total network active and reactive power losses, and Cumulative Voltage Deviation (CVD), with different weight values. Furthermore, the impact of enhancem ....

Distributed Generators , Cumulative Voltage Deviation , Grey Wolf Optimizer , Particle Swarm Optimization , Distributed Generator Dg , Enetic Algorithm Ga , Rey Wolf Optimizer Gwo , Article Swarm Optimization Pso , Ower Loss Minimization ,

"A new voltage regulation strategy using developed power sharing techni" by Bilal M. Eid, Josep M. Guerrero et al.

Integration of solar photovoltaic (PV) sources to power grid is increasing rapidly in recent years. Since the PV source is an intermittent source, this causes many challenges to distribution network. To overcome these challenges, a voltage regulation strategy using a developed power management technique for microgrid system is proposed. The technique is based on voltage ride through capability. The active and reactive power flow along with the voltage profile has been deeply investigated to improve the stability of the distribution network. As a testing environment, three microgrid configurations developed in MATLAB/Simulink have been investigated. The study shows a faster response time and lower circulating current in configuration 2. Moreover, it revealed the effectiveness of the power management technique when a cluster of dispatchable and non-dispatchable distributed generators is in operation. ....

Distributed Generators , Ower Sharing Control Strategies , Voltage Regulation ,