Analysis of Electric Power Transmission Lines Through Graph Theory: Protecting Environmental Preservation Areas Through Strategic Planning

Laíssa Daniele Silva Mota, Danielli Araújo Lima
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Abstract

Electrical networks consist of generation plants, transmission and distribution substations of electrical en-ergy. Power is transmitted through towers and lines that span hundreds or even thousands of kilometers. To ensure the health, stability of ecosystems and our quality of life, we must protect the environmental areas where transmission lines intersect. Given the global challenges related to sustainability, the conservation of natural resources and the mitigation of climate change, these studies are imperative. Through graph algorithms, especially vertex degree search and depth-first search, we identify alternative routes, avoiding sensitive regions such as conservation areas within the 440kV transmission networks of São Paulo, Brazil. By reallocating energy transport, we can ensure net-work maintenance and reduce environmental impacts from potential accidents. The results highlight the sustainable planning of transmission lines, aligning energy needs with Brazilian environmental conservation efforts, including the Rio State Park Peixe, Aguapeí State Park, Itapetinga State Park and Itaberaba State Park. Combining existing environmental laws with the promotion of sustainable technologies and practices, promoting more efficient use of resources while protecting the environment.
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通过图论分析输电线路:通过战略规划保护环境保护区
电网由发电厂、电能传输和分配变电站组成。电力通过跨越数百甚至数千公里的铁塔和线路传输。为了确保生态系统的健康、稳定和我们的生活质量,我们必须保护输电线路交汇的环境区域。鉴于可持续发展、保护自然资源和减缓气候变化等全球挑战,这些研究势在必行。通过图算法,特别是顶点度搜索和深度优先搜索,我们确定了替代路线,避开了巴西圣保罗 440 千伏输电网络内的敏感区域,如保护区。通过重新分配能源运输,我们可以确保网络维护并减少潜在事故对环境的影响。研究结果强调了输电线路的可持续规划,使能源需求与巴西的环境保护工作相一致,包括里约州立佩克塞公园、阿瓜佩州立公园、伊塔佩廷加州立公园和伊塔贝拉巴州立公园。将现有环境法律与推广可持续技术和做法相结合,在保护环境的同时促进更有效地利用资源。
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