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ABSTRACT of Design and analysis of a new power system for a remote community

Category: Engineering Paper Type: Report Writing Reference: IEEE Words: 1520

            The project is about “Design and analysis of a new power system for a remote community” that also involves the design of an energy-efficient hybrid power source for remote communities. The objective of the project report is the development of individual electric power system sources for the people of remote communities. In this project, there are many sides of the design of power systems with the growth where the proposed system has the component design plus the combination of systems with the environmental impacts, social impacts as well as the cost-effective concerns. In the development of a new proposed power system, the design needs consideration of potential energy source and energy conversion techniques. Wind energy, solar energy, hydro energy, thermometric energy, and systems are included in the Available energy sources. Depending on location along with the power supplies for the financial, ecological, community as well as political concern for the selection of the energy sources for these applications.  The life cycle of the expenditure along with the predictable cost involved in the financial considerations where the electrical energy is generated.  The efficiency of the power systems which is calculated. In this design, the most important factor is the new community in which around 100 typical Australian houses require a Power supply. From the main grid is 600 K distance of the

new suburb supposing the standard transmission cable to calculate the draw single line diagram.

II. Introduction of Design and analysis of a new power system for a remote community

        In the remote community areas, the need for the energy efficient electric power system is the driving force which studies the hybrid energy and the substitute of the power systems. In this project, the Electrical power systems play the important role which is the great advantages like, it has the low maintenance cost, low power loss, high reliability, and long system of life as well as the size of the systems [1]

        The electrical power systems are very important for the new community, which has the 100 typical Australian house that needs the power supply for the developing countries. There is no access for the electric services systems in the remote communities, which is used the diesel of electric generators to obtain the electric power for the daily needs. Due to the cost of transport, the system is normally too expensive, and it is obtained the routine preservation for the operating conditions. The technologies of the remote power systems are involved in these projects which combine the efforts of the faculty as well as students and control the private industry association [2].

            In this project, the purpose of the project is to build a new power system for the new remote community. All the facts of the manufacturing  by the precious research is provided to the students in these projects, which give the knowledge , skills to helping and build the working with the industry partners. The process of the improvement of the system and the manufacturing design involving the design of the module along with the system integration is bared by the students in this project. For this project, there will need to suppose the environmental as well as the financial aspect of the objective plus contact of the skills on the populations. For the design, there are different criteria for the new power system. In terms of the life cycle cost, the proposed system is very cost effective. Through the proper use of donated as well as accessible apparatus optimizing the performance of systems. When this system is in working conditions, its maintenance cost is lower. Requirements of the design criteria are deliberation of the possible energy sources along with the adaptions of the energy substitutes in the development of the new hybrid power system. For the design and the simulations tools, students will also use the computer while also working with a real system.

Economic and Reliability of the electric power system

        The capability of the business is an economic power, which progresses the standard method of living. Capacity is decreased for outside of force, which is also reduced its freedoms. The major factor of the economic power system is Procure power. Power system prime factors are to provide the customer by the electrical power as proficiently as possible with suitable reliability and quality.

The reliability of the power systems has defined the capability of systems which satisfy the needs of the individuals [3].

III. Test System of Design and analysis of a new power system for a remote community

Using Transmission Line for the Proposed Power System:

In the below figure 1 select the long length of the transmission line, which is proposed in the power systems for the new community that is around about 100 typical Australian houses require a power supply

       

                

                   

Conclusion on Design and analysis of a new power system for a remote community

        Summing up all the discussion, the objective of the project is achieved. The total power i9s determined for the 100 Australian houses in the remote community plus supposed all parameters which are calculated for the transmission lines through using the ABCD parameters. All the requirements, the objective of the projected is accurate according to the given specifications.

References of design and analysis of a new power system for a remote community


R. W. Wies and et al., "DESIGN OF AN ENERGY-EFFICIENT HYBRID POWER SOURCE FOR REMOTE LOCATIONS AS A STUDENT," Proceedings of the 2002 American Society for Engineering Education Annual Conference & Exposition, 2002.


M. T. Yeshalem et al., "Design of an off-grid hybrid PV/wind power system for remote mobile base station: A case study," AIMS Energy , vol. 5, no. 1, pp. 96-112, 2017.


M. Munasinghe, "Engineering—Economic Analysis of Electric Power Systems," Proceedings of the IEEE, vol. 72, no. 4, pp. 424 - 461, 2000.


D. Shi and et al., "Transmission line parameter identification using PMU measurements," European Transactions on Electrical Power, vol. 21, no. 4, p. 1574–1588, 2010.


A. R. Syarifah and et al, "Design of Hybrid Power System for Remote Area.," IOP Conference Series Materials Science and Engineering, vol. 288, 2018.

 

 

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