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Standardized Design And Management Of Tobacco Workstation’s Power Distribution And Power Generation System

Posted on:2014-01-10Degree:MasterType:Thesis
Country:ChinaCandidate:L ZhangFull Text:PDF
GTID:2252330425460207Subject:Electrical engineering
Abstract/Summary:PDF Full Text Request
In recent years,Chinese tobacco production infrastructure and the construction ofthe tobacco workstation have been continuing to intensify.The overall level of tobaccoproduction has been continually improved.The quality of tobacco has been increasedyear by year.However,most of the tobacco workstations are located in remote villages,they lack appropriate design standards to guide and regulate,in addition to limits of theobjective conditions,the design and management of power distribution and powergeneration system is still in poor. This rude management method may lead to accidentsin production and result in business loss. So research of tobacco workstation’s powerdistribution and power generation system has important significance.Firstly,according to the year purchasing quantity statistics of a certain tobaccoworkstation from Hunan province,we classified tobacco workstation design with powersystem as large,middle and small schemes according to the tobacco workstation allotelectric real power load,which will make the design scheme and the electricity loadcorrespond to each other. Then the SVM algorithm is used for tobacco workstation’selectric load medium and long-term load forecasting in the region.This approach canprovide basis for tobacco workstation’s power distribution room and power room’sbuilding.Secondly,standardized design of tobacco workstation’s power distribution andpower generation system has been studied in this paper. Standardized design includespower distribution and power generation electrical equipment selection; buildinglightning protection and electric lightning protection;earthing and lighting design.It isa complete set of design scheme for different sizes.Tobacco workstation can choose asuitable one corresponding to the power distribution system’s design scheme.Thirdly,according to the actual situation of the tobacco workstation,in order tomake maximize economic benefits as the optimization objective,a distribution systemreactive compensation optimization mathematical model is established.Simultaneouslywith minimal time investment to optimize the objective so as to establish a mathematicalmodel of optimal allocation switch.Through the program optimization algorithms tocalculate the optimal reactive power compensation capacity and its location and theswitch mounting position and its number.Fourthly,based on the theory of PDCA cycle,the tobacco workstation powerdistribution and power generation system safety management is investigated in order to change the tradition paying attention to the results as well as the process,change the pasttradition given priority to“fix” to give priority to “pipe”. Then we can formulate asafety management standard.Finally,this paper has studied the tobacco workstation’s power distribution andpower generation monitoring system. According to the actual situation of tobaccoworkstation,a monitoring system has been designed. The system adopts distributedstructure,module design and is divided by function. The whole system is divided intothree layers,namely the field layer,middle layer and control layer. Field implementationresults show that the system is reliable....
Keywords/Search Tags:Tobacco Workstation, Power Distribution and Power Generation System, Optimal Allocation, Deming Circulation Theory, Monitoring System
PDF Full Text Request
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