scholarly journals Implementation of Minigrid with Hybrid Renewable Energy Sources for Urban Community Buildings

2019 ◽  
Vol 8 (4) ◽  
pp. 10882-10892

The rapid day-by-day growth of urbanization significantly increases the burden on utility grid that leads to frequent grid failures. So, Renewable Energy Sources (RES) based local power supply systems, called microgrids, are evolved to augment the utility grid supply. However, these microgrids possess uncertain power generation capacity due to the dependency on variable and uncertain environmental conditions. Thus, the grid failures continued due to unreliable operation of the microgrids. So, as a solution to enhance the reliability of microgrids, this paper suggests an integration of multiple microgrids in an urban locality, which are built by different RES and form a local integrated grid, called “minigrid”. This is further motivated by the present scenario of urban buildings, where most of the cases, the heterogeneous load natured buildings are grouped together in an urban neighborhood, thereby, facilitating resource sharing. This collective operation of multiple microgrids share the generators across all of their loads, thereby manages the power requirement in the locality itself instead of depending on the utility grid. With this view, this paper discusses the development of urban community minigrid, which is formed by integrating different categories of buildings, where each building is associated with its microgrid. This proposed minigrid scheme enhances the power supply reliability by enabling power-sharing among the buildings; as a consequence, it reduces the burden on utility grid. Further, this minigrid enables power import or export to the utility grid during deficit or excess local power generation conditions.

Paper In modern trend renewable energy sources has taken vast place in power generation. out of all renewable energy sources solar power generation source has high efficiency . in our paper we have using a converter which step up the power generation through photo voltaic cell. Coupled inductor topology not step up input but also provides uninterrupted power supply to load. This type of system is used in island applications. Voltage developed by photo voltaic cell is 15v which is step up to 220V using our proposed converter with power of 100W, this converter provide output which is fifteen times of input. This converter is transformer less and has negligence losses therefore it is DC-DC converter used for DC applications and for Ac applications by connecting an inverter to it.


2019 ◽  
pp. 0309524X1987403 ◽  
Author(s):  
Aleksey A Zhidkov ◽  
Andrey A Achitaev ◽  
Mikhail V Kashurnikov

The urgency of developing renewable power generation in Russia is associated with the presence of a large number of regions with a low degree of electrification. More than two-thirds of the territory of Russia is located in the area of decentralized power supply, where the main source of energy is imported diesel fuel or associated gas from local fields. At present, one of the directions for the development of renewable power generation in Russia is the implementation of a hybrid power supply system for autonomous power systems of remote regions. However, along with the possibility of using renewable energy sources, it is important for such regions to generate heat from co-generation of diesel power plants, since there is an urgent problem of heat supply for remote regions, especially located in the Far North of Russia. This article presents an analysis of the influence of using renewable energy sources in autonomous power systems on co-generation of diesel power plants.


2018 ◽  
Vol 5 (1) ◽  
pp. 256-265 ◽  
Author(s):  
Ikuobase Emovon

The key to sustainable economic development is having adequate electricity to power homes and industrial machines. However, electric power supply in majority of developing countries is grossly inadequate. To improve on the power generation different renewable energy sources have been explored. One of the sources of renewable energy is the application of speed breaker system to convert kinetic energy of moving vehicles into electricity using various mechanisms. The purpose of this paper is to develop a methodology for determining the most appropriate mechanism of speed breaker system for effective power generation. The proposed approach aggregated the AHP and the WASPAS methods. The efficacy of the methodology is illustrated with a numerical example. From the analysis, the optimum speed breaker mechanism for power generation is the roller mechanism. A sensitivity analysis was also carried out to determine the effect of one of the parameters of the proposed method on the performance of the different mechanisms. The result of the sensitivity analysis showed that the optimum solution remained unchanged.


2018 ◽  
pp. 8-13
Author(s):  
Boris M. ANTONOV ◽  
◽  
Nikolai N. BARANOV ◽  
Konstantin V. KRYUKOV ◽  
Yuri K. ROZANOV ◽  
...  

2021 ◽  
pp. 0309524X2110241
Author(s):  
Nindra Sekhar ◽  
Natarajan Kumaresan

To overcome the difficulties of extending the main power grid to isolated locations, this paper proposes the local installation of a combination of three renewable energy sources, namely, a wind driven DFIG, a solar PV unit, a biogas driven squirrel-cage induction generator (SCIG), and an energy storage battery system. In this configuration one bi-directional SPWM inverter at the rotor side of the DFIG controls the voltage and frequency, to maintain them constant on its stator side, which feeds the load. The PV-battery also supplies the load, through another inverter and a hysteresis controller. Appropriately adding a capacitor bank and a DSTATCOM has also been considered, to share the reactive power requirement of the system. Performance of various modes of operation of this coordinated scheme has been studied through simulation. All the results and relevant waveforms are presented and discussed to validate the successful working of the proposed system.


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