Developing and ranking the strategies of Zarand power plant using quantitative strategic planning matrix and best-worst method

Q3 Environmental Science Acta Innovations Pub Date : 2022-06-24 DOI:10.32933/actainnovations.44.5
Leila Zangiabadi, S. H. Moosavirad, B. Farahbakhsh, M. Mirhosseini
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Abstract

Developing the power plants in any country is considered an economic development strategy as it changes the country’s market despite the competitive pressures. However, to grow the electricity market, policymakers need to evaluate the domestic Strengths, Weaknesses, Opportunities, and Threats (SWOT) of electric power plants. So, the necessity of a strategic plan for the power plants is inevitable to reach the goals such as eliminating the shortcomings, and meeting the desired criteria of an organization, such as more market share, acceptable profitability, customer satisfaction, increasing profit growth rate, and productivity through economic and cost-effective operations. Therefore, in this paper, the Zarand power plant in Iran is chosen as a case study to develop the associated strategies and rank them. A power plant strategic plan was generated by using a SWOT matrix. Then, the developed strategies were prioritized using a quantitative strategic planning matrix (QSPM) and the best-worst method (BWM). The results confirm that developing the main product (electricity power), managing water consumption, and providing equipment are the most critical strategies for the Zarand power plant. Findings also demonstrated that the results of the BWM method are more accurate and correct than the QSPM method for prioritizing strategies
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用定量战略规划矩阵和最佳-最差方法对扎兰德发电厂的战略进行开发和排序
在任何国家发展发电厂都被视为一种经济发展战略,因为它改变了该国的市场,尽管存在竞争压力。然而,为了发展电力市场,政策制定者需要评估国内发电厂的优势、劣势、机会和威胁(SWOT)。因此,发电厂战略计划的必要性是不可避免的,以实现目标,如消除缺点,并满足组织的期望标准,如更多的市场份额、可接受的盈利能力、客户满意度、提高利润增长率,以及通过经济高效的运营提高生产力。因此,本文选择伊朗扎兰德发电厂作为案例研究,制定相关策略并对其进行排名。利用SWOT矩阵生成了发电厂战略计划。然后,使用定量战略规划矩阵(QSPM)和最佳-最坏方法(BWM)对制定的战略进行优先级排序。结果证实,开发主要产品(电力)、管理用水量和提供设备是扎兰德发电厂最关键的战略。研究结果还表明,在确定策略优先级方面,BWM方法的结果比QSPM方法更准确、更正确
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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