山西省電力公司倉儲系統(tǒng)的優(yōu)化與設(shè)計
發(fā)布時間:2018-05-18 13:08
本文選題:電力公司 + 倉儲; 參考:《華北電力大學》2014年碩士論文
【摘要】:物資管理作為倉儲系統(tǒng)的重要組成環(huán)節(jié),對倉儲的運作有著舉足輕重的作用。山西省電力公司作為關(guān)系山西民生的大型國有企業(yè),承擔著電網(wǎng)建設(shè)與運行的重要責任,如何降低成本,保證安全,穩(wěn)定運營,滿足山西人民對電力的需求,是山西省電力公司面臨的嚴峻課題。在電網(wǎng)企業(yè)中,物資管理不僅對電網(wǎng)建設(shè)有著深遠的影響,更對電網(wǎng)的穩(wěn)定與維護起著至關(guān)重要的作用。 本文通過綜合分析國內(nèi)外關(guān)于物資管理和倉儲管理的相關(guān)研究,結(jié)合我國電力系統(tǒng)和山西省電力公司實際,從倉儲管理的主要活動、倉儲管理流程、倉儲管理制度、倉儲管理模式、倉儲管理步驟、倉儲管理方法等幾個方面,介紹了倉儲管理的基本理論。結(jié)合電力公司的倉儲管理現(xiàn)狀,利用現(xiàn)狀分析方法,總結(jié)分析了目前山西省電力公司倉儲管理存在的主要問題和不足,包括倉儲配送管理策略、倉儲職能管控、倉儲配送網(wǎng)絡(luò)規(guī)劃、庫存物資管理、倉庫及運作管理、運輸及配送管理、信息系統(tǒng)建設(shè)、人員管理及績效考核等幾個方面。在此基礎(chǔ)上,本文建立了電力公司倉儲系統(tǒng)多目標優(yōu)化模型,并利用改進的遺傳算法進行模型的求解和算例分析,并結(jié)合山西省電力公司倉儲管理中存在的不足,提出了山西省電力公司包括:加強倉儲管理組織管控、逐步完成網(wǎng)絡(luò)布點、推進信息化建設(shè)、制定科學備品備件儲備定額、完善管理制度與業(yè)務(wù)流程、基礎(chǔ)設(shè)施與設(shè)備、提高人員崗位技能等多個方面為主要內(nèi)容的倉儲系統(tǒng)優(yōu)化設(shè)計方案。 本文通過實例分析,對我國電力公司倉儲管理進行了詳細的研究,提出了山西省電力公司倉儲管理中存在的問題和不足,并建立了倉儲系統(tǒng)優(yōu)化設(shè)計方案,對我國電力公司倉儲系統(tǒng)管理具有重要的指導(dǎo)意義。
[Abstract]:As an important component of storage system, material management plays an important role in the operation of storage. Shanxi Electric Power Company, as a large state-owned enterprise concerned with the people's livelihood of Shanxi Province, is shouldering the important responsibility of power grid construction and operation. How to reduce costs, ensure safe and stable operation, and meet the needs of Shanxi people for electricity, Shanxi Electric Power Company is facing a serious problem. In the power grid enterprises, material management not only has a profound impact on the power grid construction, but also plays a vital role in the stability and maintenance of the power grid. Through the comprehensive analysis of domestic and foreign related research on material management and storage management, combined with the actual situation of China's electric power system and Shanxi Electric Power Company, this paper analyzes the main activities of warehousing management, warehousing management process, and warehousing management system. This paper introduces the basic theory of warehouse management in several aspects, such as storage management mode, warehouse management steps and storage management methods. Combined with the current situation of warehousing management in electric power companies, this paper summarizes and analyzes the main problems and shortcomings of current warehousing management in Shanxi Electric Power Company, including the strategy of warehousing and distribution management, the management of warehousing functions, and the methods of current situation analysis. Warehouse distribution network planning, inventory management, warehouse and operation management, transportation and distribution management, information system construction, personnel management and performance evaluation. On this basis, this paper establishes the multi-objective optimization model of storage system of electric power company, and uses the improved genetic algorithm to solve the model and the example analysis, and combines the deficiency in the storage management of Shanxi Electric Power Company. The paper puts forward that Shanxi Electric Power Company includes: strengthening warehouse management organization and control, completing network distribution gradually, promoting information construction, formulating scientific spare parts reserve quota, perfecting management system and business process, infrastructure and equipment. Improve the post skills and other aspects for the main content of the storage system optimization design. Based on the analysis of practical examples, this paper makes a detailed study on the storage management of electric power companies in China, puts forward the problems and shortcomings in the storage management of Shanxi Electric Power Company, and establishes the optimal design scheme of the storage system. It has important guiding significance to the storage system management of the electric power company of our country.
【學位授予單位】:華北電力大學
【學位級別】:碩士
【學位授予年份】:2014
【分類號】:TP18;F426.61;F253.9
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