Academic literature on the topic 'National Electric Power Regulatory Authority (NEPRA)'

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Journal articles on the topic "National Electric Power Regulatory Authority (NEPRA)"

1

Fatima, Umbreen, and Anjum Nasim. "Interprovincial Differences in Power Sector Subsidies and Implications for the NFC Award." Pakistan Development Review 52, no. 4I (2013): 421–36. http://dx.doi.org/10.30541/v52i4ipp.421-436.

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Power sector subsidies constituted 83 percent of the federal government’s total subsidies of PRs 558 billion in 2012. The tariff differential subsidy (TDS) amounted to PRs 464 billion (including arrears of PRs 312.8 billion from previous years). The TDS is provided to distribution companies (DISCOs) to cover the difference between the tariff schedules approved by the National Electric Power Regulatory Authority (NEPRA) (which can differ across DISCOs) and the uniform tariff schedule (by consumer group) notified by the Ministry of Water and Power (MoWP) for all regions of the country. The NEPRA
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2

Yousaf, Adnan, Rao Muhammad Asif, Mustafa Shakir, et al. "A Novel Machine Learning-Based Price Forecasting for Energy Management Systems." Sustainability 13, no. 22 (2021): 12693. http://dx.doi.org/10.3390/su132212693.

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Price forecasting (PF) is the primary concern in distributed power generation. This paper presents a novel and improved technique to forecast electricity prices. The data of various power producers, Capacity Purchase Price (CPP), Power Purchase Price (PPP), Tariff rates, and load demand from National Electric Power Regulatory Authority (NEPRA) are considered for MAPE reduction in PF. Eight time-series and auto-regression algorithms are developed for data fetching and setting the objective function. The feed-forward ANFIS based on the ML approach and space vector regression (SVR) is introduced
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3

Zahid, Hassan, Farhana Umer, Zeeshan Rashid, Abdur Raheem, Rabia Shakoor, and G. Amjad Hussain. "Critical Analysis and Application of Net-Metering Practice in MEPCO." International Journal of Photoenergy 2020 (June 13, 2020): 1–13. http://dx.doi.org/10.1155/2020/4135860.

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The electrical infrastructure around the globe is expanding at a rapid rate for the sake of fulfilling power demands in the domestic, commercial and entertainment industries aiming to boost the living standards. In this regard, renewable energy sources (RES) are globally accepted potential candidates for maintaining inexhaustible, clean, and reliable electricity with a supplementary feature of economic prospect. The efficiency of power distribution at reduced cost to the consumers can be further enhanced by introducing a two-way billing system so-called net-metering which has the potential to
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4

Akbar, Faraz, and Zia Ur Rahman. "Electrical power projects: the role of risk management and reliability." Mehran University Research Journal of Engineering and Technology 43, no. 2 (2024): 103. http://dx.doi.org/10.22581/muet1982.3017.

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The management of power outages caused by severe weather disasters such as earthquakes, tornadoes, and weather disturbances is critical in power transmission and distribution systems. The transmission system is the key to any power system and can trigger severe or significant effects if it fails. Different causes of fires, extreme weather conditions, ageing components, poor maintenance and malfunctions, human error, mal-operative procedures, and high operating network variables may cause transmission components to fail. System reliability is the probability that, despite component failures, a
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5

Ebigenibo Genuine Saturday. "Nigerian Power Sector: A new structure required for effective and adequate power generation, transmission and distribution." Global Journal of Engineering and Technology Advances 1, no. 1 (2021): 06–018. http://dx.doi.org/10.30574/gjeta.2021.7.1.0035.

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In this paper, the structure of the Nigerian power sector is examined, the problems in the structure are identified and a new structure is proposed for effective power generation, transmission and distribution. Besides the problems usually canvassed, the current structure is defective from the perspective of the ownership of the power infrastructures, passive involvement of state governments and undue influence of the federal government. The reforms in the sector were driven by the Electric Power Sector Reform Act (EPSRA) of 2005, leading to the creation of Power Holding Company of Nigeria (PH
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Ebigenibo, Genuine Saturday. "Nigerian Power Sector: A new structure required for effective and adequate power generation, transmission and distribution." Global Journal of Engineering and Technology Advances 7, no. 1 (2021): 06–018. https://doi.org/10.5281/zenodo.4717317.

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In this paper, the structure of the Nigerian power sector is examined, the problems in the structure are identified and a new structure is proposed for effective power generation, transmission and distribution. Besides the problems usually canvassed, the current structure is defective from the perspective of the ownership of the power infrastructures, passive involvement of state governments and undue influence of the federal government. The reforms in the sector were driven by the Electric Power Sector Reform Act (EPSRA) of 2005, leading to the creation of Power Holding Company of Nigeria (PH
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7

Dahunsi, F. M., O. R. Olakunle, and A. O. Melodi. "Evolution of Electricity Metering Technologies in Nigeria." Nigerian Journal of Technological Development 18, no. 2 (2021): 152–65. http://dx.doi.org/10.4314/njtd.v18i2.10.

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Advancement in technology has continuously driven the evolution of metering devices and infrastructure in the world and has resulted in more accurate and user-friendly devices equipped with customer interaction interfaces. The evolution of metering technology in Nigeria arose with the unbundling of the National Electric Power Authority (NEPA) but have not progressed smoothly and successfully despite the implementation of various reforms and policies in the Nigerian electricity industry. The persisting problems in the electricity distribution system such as energy theft, vandalism, energy wasta
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8

Khan, Muhammad Muneeb, Sadiq Ahmad, Muhammad Usman Tariq, Zeshan Haider Anjum, and Muhammad Amir Shafi. "Simulation design of 542kWp DC/480kWp AC Solar Photovoltaic System at Institute of Southern Punjab." Sir Syed University Research Journal of Engineering & Technology 14, no. 1 (2024): 102–7. http://dx.doi.org/10.33317/ssurj.620.

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Conventional methods of producing electricity are expensive, pollute the environment, need a lot of maintenance, and eventually run out of power. Because of this, it is imperative to take use of the unrealized potential of renewable energy sources that are also ecologically beneficial. At the Institute of Southern Punjab (ISP), Multan, Pakistan geographical location coordinates latitude 30° 17′ 20′′ N and longitude 71° 30′ 1′′ E. Current study developed an effective, long-lasting, and environmentally friendly Grid Tie PV System (GTPVS) to address this issue. One location where solar energy has
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9

Alsafran, Ahmed Sulaiman. "A Feasibility Study of Implementing IEEE 1547 and IEEE 2030 Standards for Microgrid in the Kingdom of Saudi Arabia." Energies 16, no. 4 (2023): 1777. http://dx.doi.org/10.3390/en16041777.

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The Kingdom of Saudi Arabia’s (KSA) microgrids must make significant progress during the next five years, since the Saudi government published the Saudi Vision 2030 and the National Transformation Program 2020. In order to implement renewable energy and microgrid technologies in the Saudi Electric Power System(EPS), King Abdullah City for Atomic and Renewable Energy (K.A.CARE) started developing an energy mix program in 2016. To achieve the intended goals, this program will unquestionably need to adhere to practical and technical criteria. In the past five years, the Saudi government has made
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10

(Nechifor) Roman, M., and A. Sălceanu. "Web business computing tool in support to photovoltaic prosumers." IOP Conference Series: Materials Science and Engineering 1254, no. 1 (2022): 012015. http://dx.doi.org/10.1088/1757-899x/1254/1/012015.

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Abstract Electricity is one of the most essential keys in the evolution of nowadays civilization. Nevertheless, huge levels of electric power production and consumption could cause a negative impact on the environment, such as poor air quality, greenhouse emissions, climate change, and ecological disasters. Consequently, today's society needs sustainable solutions that can meet the geopolitical, socio-economic and climatic difficulties that energy production requires. Understanding this, international development programs have been modified approaching the use of sustainable sources of energy,
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