摘要(英) |
Cargo Fleet routing and flight scheduling are essential to airline cargo operations. In particular, they always affect the usage efficiency of facilities, the establishment of timetables and the crew scheduling. As a result, they are essential to carriers’ profitability, level of service and competitive capability in the market. However, most of the airlines in Taiwan currently adopt a trial-and-error process for cargo fleet routing and flight scheduling practices. Such an approach is considered to be less efficient when the flight network become larger, and can possibly result in an inferior feasible solution. In the past most research on airline scheduling was mainly focused on passenger transportation, which is fundamentally different from air cargo transportation. In particular, airport selecting in service network design is typically in the stage of long-term plan in passenger transportation, but in cargo transportation, due to possibly significant demand changes in short-term operations, carriers may perform their airport selecting, fleet routing and timetable setting together in the stage of short-term plan, according to considerations of demand and profit. Moreover, passengers are more sensitive to time than cargos. Too many transfers in a transport service may result in significant loss of passengers, but not much loss of cargos. Besides, cargos with the same OD may be sensitive to different times, which can be incorporated into fleet routing systematically in order to find the most effective transport plan.
In this research, given the operating data, including fleet size, airport flight quota and available time slots, cargo handling cost at airports and flight cost, on the basis of the carrier’s perspective, we develop an integrated scheduling model by combining airport selecting, fleet routing and timetable setting, with the objective of maximizing the operating profit, subject to the related operating constraints. The model is a useful planning tool for cargo airlines to determine suitable service airports, fleet routes and timetables in their short-term operations. We employ network flow techniques to construct the model, which include multiple cargo- and fleet-flow networks in order to formulate the flows of cargos and fleet in the dimensions of time and space. In the cargo-flow networks, different from that in the past research, we construct multiple OD-time-pair time-space networks on the base of cargos’ timeliness. In the fleet-flow networks, we use an integer flow network to formulate the periodical fleet routes. Some side constraints set between the cargo- and fleet-flow networks according to the real operating requirements. The model formulated as a mixed integer program that is characterized as an NP-hard problem. We employ a mathematical programming solver and develop a heuristic to solve the problem. Finally, to evaluate the model and the solution algorithm, we perform a case study using real cargo operating data from a major Taiwan airline. |
參考文獻 |
1. 朱純孝,「考慮旅客偏好下航空公司班表與票價訂定之研究」,碩士論文,成功大學交通運輸管理系,台南(1999)。
2. 許巧鶯、王志青,「軸輻航空貨運網路之直接與轉運路線選擇」,運輸計畫季刊,第26卷,第一期,頁95-頁118 (1997)。
3. 許巧鶯、溫裕弘,「應用灰色理論於航空公司網路型態設計與航線班機頻次規劃」,運輸學刊,第九卷,第三期,頁45-頁64 (1996)。
4. 劉得昌,「實用班機排程方法」,碩士論文,國立交大交通運輸研究所,新竹(1993)。
5. 劉得昌,「國內航線旅次需求型態推估與班次起飛時間之訂定」,博士論文,國立交通大學交通運輸研究,新竹(2000)。
6. 顏上堯、何淑萍,「飛航排程暨班次表之建立」,運輸計劃季刊,第二十三卷,第一期,頁73-頁90 (1994)。
7. 顏上堯、黃武強,「配合轉運中心之飛航定線與航次頻率規劃」,運輸計劃季刊,第二十五卷,第四期,頁681-頁708 (1996)。
8. 顏上堯、王中瑞,「多目標飛航網路路線及頻次規劃」,工業工程學刊,第十三卷,第四期,頁307-頁316 (1996)。
9. 顏上堯、李銘杰、湯慶輝,「變動需求下飛航排程暨班次表建立之研究」,中華民國運輸學會第十七屆論文研討會論文集,嘉義,第793-892頁(2002)。
10.顏上堯、翁綵穗,「季節轉換間緩衝期飛航排程之研究」,運輸計劃季刊,第三十卷,第四期,第891- 922頁 (2001)。
11.顏上堯、曾志煌,「單機種機隊排程與班次整合之研究」,運輸計劃季刊,第二十八卷,第四期,頁635-頁658 (1999)。
12.Abara, J., “Applying Integer Linear Programming to the Fleet Assignment Problem,” Interfaces, Vol. 19, pp. 20-28 (1989).
13.Agin, N. and Cullen, D., “An Algorithm for Transportation Routing and Vehicle Loading,” in Geisler, M. (Ed.), Logistics, pp.1-20, North Holland, Amsterdam (1975).
14.Aykin, T., “The Hub Location and Routing Problem,” European Journal of Operational Research, Vol. 83, pp. 200-219(1995).
15.Cater, E. and Morlok, E. “Planning Air Transport Network in Appalachia, ”Transportation Engineering, Journal of ASCE, Vol. 101, pp 569-588(1975).
16.Chen, Y. and Ponder, R.., “The Small Package Air Freight Industry in the United States: Areview of the Federal Express Experience,” Transportation Research A, Vol.13, pp.221~229(1979).
17.Chestler, L., “Overnight Air Express : Spatial Pattern, Competition and the Future of Small Package Delivery Services, ” Transportation Quarterly, Vol.39, pp.59~71(1985).
18.Current, J. R., C. S. Revelle, and J. L. Cohon, “The hierarchical network design problem, ”European Journal of Operations Research, Vol.2, pp.57~66(1986).
19.Current, J. R., C. S. Revelle, and J. L. Cohon, “The Design of a Hierarchical Transportation Network with Transshipment Facilities, ” Transportation Science, Vol.22, No.4, pp.270~277(1988).
20.Clarke, L.W. Hane, C. A., Johnson, E. L. and Nemhauser, G. L., “Maintenance and Crew Considerations in Fleet Assignment, ” Transportation Science, Vol.30, pp. 249-260 (1996).
21.Desaulniers, G., Desrosiers, J., Dumas Y., Solomon, M. M. and Soumis, F., “Daily Aircraft Routing and Scheduling”, Management Science, Vol. 43, pp. 841-855, (1997).
22.Dobson, G. and Lederer, P. J., “Airline scheduling and routing in a hub-and-spoke system, ” Transportation Science, Vol. 27, No. 3, pp. 281-297 (1993).
23.Gordon, S. and de Neufville, R. ”Design of Air Transportation Networks, ”Transportation Research, Vol. 7,pp. 207-222(1973).
24.Hane, C. A., Barnhart, C., Johnson, E. L., Marsten, R., Nemhauser, G. L. and Sigismondi, G., “The Fleet Assignment Problem: Solving a Large-Scale Integer Program,” Mathematical Programming Study, Vol. 70, pp. 211-232 (1995).
25.Jaillet, P., Somg, G. and Yu, G. “Airline Network Design and Hub Location Problem, ”Location Science, Vol4, No. 3, pp195-212
26.Levin, A., “Some Fleet Routing and Scheduling Problems for Air Transportation Systems,” Flight Transportation Laboratory Report R68-5, Massachusetts Institute of Technology, MA (1969).
27.Powell, Warren B. and Yosef Sheffi, “Design and implementation of an interactive optimization system for network design in the motor carrier industry, ” Operations Research, Vol.37, No.1, pp.12~29(1989).
28.Simpson, R.W., “A Review of Scheduling and Routing Model for Airline Scheduling,” IX AGIFORS Symposium Broadway, England (1969).
29.Teodorovic, D. “Flight Frequency Determination,” Journal of Transportation Engineering, Vol. 109, No. 5, pp. 747-757 (1983).
30.Teodorovic, D. ”Multi-Attribute Aircraft Choice for Airline Network, ”Journal of Transportation Engineering, Vol. 112, pp. 634-646 (1986).
31.Teodorovic, D. and Krcmar-Nozic, E. ”Multicriteria Model to Determine Flight Frequencies on an Airlane Network under Competitive Conditions,” Transportation Science, Vol. 23, No1, pp. 14-25(1989).
32.Teodorovic, D. Kalic, M. and Pavkovic, G.. “The Potential for Using Fuzzy Set Theory in Airline Network Design,” Transportation Research, Vol. 28B, No. 2, pp. 103-121(1994).
33.Yan, S. and Young, H. F., “A Decision Support Framework for Multi-Fleet Routing and Multi-Stop Flight Scheduling,” Transportation Research, Vol. 30A, pp. 379-398 (1996). |