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Problem kitajskega poštarja : delo diplomskega seminarja
ID Križaj, Maja (Author), ID Jaklič, Gašper (Mentor) More about this mentor... This link opens in a new window

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Abstract
V delu diplomskega seminarja z naslovom Problem kitajskega poštarja sta predstavljena dva različna primera problema kitajskega poštarja. V prvem delu je obravnavan algoritem za reševanje problema na neusmerjenem grafu, v drugem delu pa algoritem za reševanje problema na usmerjenem grafu. Pri obeh primerih se ukvarjamo s problemom, katere povezave dodati v graf za zagotovitev obstoja Eulerjevega obhoda, pri čemer morajo biti stroški dodanih povezav čim manjši. Za neusmerjene grafe je predstavljen algoritem, ki vozlišča lihe stopnje paroma poveže z najkrajšimi potmi, pri usmerjenem grafu pa je obravnavana Madžarska metoda, ki rešuje problem najcenejšega popolnega prirejanja. Predstavljen je tudi alternativni pristop s problemom razvoza.

Language:Slovenian
Keywords:problem kitajskega poštarja, Eulerjev obhod, iskanje najkrajših poti, T-spoj, prirejanje, Madžarska metoda, problem razvoza
Work type:Final seminar paper
Typology:2.11 - Undergraduate Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2025
PID:20.500.12556/RUL-173613 This link opens in a new window
UDC:519.17
COBISS.SI-ID:250115587 This link opens in a new window
Publication date in RUL:19.09.2025
Views:416
Downloads:116
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Secondary language

Language:English
Title:The chinese postman problem
Abstract:
In this degree titled "The chinese postman problem," two different variants of the Chinese postman problem are presented. The first part deals with an algorithm for solving the problem on an undirected graph, while the second part addresses an algorithm for solving the problem on a directed graph. In both cases, we are concerned with the problem of which edges to add to the graph to ensure the existence of an Eulerian cycle, where the cost of the added edges must be minimized. For undirected graphs, an algorithm is presented that pairs vertices of odd degree via shortest paths, while for directed graphs, the Hungarian method is discussed, which solves the minimum cost perfect matching problem. An alternative approach using the transshipment problem is also presented.

Keywords:Chinese postman problem, Eulerian cycle, shortest path problem, T-join, matching, Hungarian algorithm, transshipment problem

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