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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Kapacitets- och känslighetsanalys av bagagehanteringssystem på Arlanda flygplats / Capacity and sensitivity analysis of luggage handling system at Stockholm-Arlanda airport

Bernandersson, Martin January 2005 (has links)
<p>Detta är en kapacitets- och känslighetsanalys av bagagehanteringssystem vid Arlanda flygplats. Studien är ett examensarbete för civilingenjörsutbildningen Kommunikations- och Transportsystem vid Linköpings universitet och är utförd på uppdrag av Luftfartsverket, LFV Teknik under 2004 och 2005. </p><p>Studien har gjorts med datorstödd simulering som analysverktyg. Studien har gjorts genom att en simuleringsmodell av det studerade systemet har byggts i simuleringsprogrammet Arena. Denna modell har matats med trafikunderlag från en normalvecka under 2004. Utifrån denna modell och utifrån förväntade trafikökningar har sedan ett antal kapacitets- och känslighetsanalysscenarier formulerats och dessa har sedan simulerats och resultaten har tolkats och analyserats samt jämförts med resultaten från grundmodellen. </p><p>Kapacitetsanalysen visar att anläggningen är väl rustad för att ta emot den annalkande trafikökning som förväntas under de närmaste åren, eftersom den ökade trafiken inte innebär några signifikanta problem genom ökat antal väskor som inte hinner med sina flighter. Det som dock kan vara en begränsande faktor är att fickallokeringssystemet inte är effektivt och det sänker anläggningens verkliga kapacitet. För att kunna nyttja anläggningen maximalt bör fickallokeringssystemet ses över. </p><p>Känslighetsanalysen visar att systemet är mycket sårbart för störningar, särskilt om kommunikationen med BSM-centralen går ner eller om en Röntgen Level 2-maskin går sönder. Sådana händelser resulterar i att anläggningens kapacitet minskar kraftigt och i vissa fall klarar anläggningen inte av att hantera dagens trafikmängd. En handlingsplan för hur dessa störningar och konsekvenserna av dem ska minimeras bör införas snarast. </p> / <p>This is a capacity and sensitivity analysis of a baggage handling system at Stockholm-Arlanda airport. The study is a Master's Thesis in Communication and Transport Systems Engineering at the University of Linköping. The study was done on behalf of the Swedish Civil Aviation Administration. The analysis tool that was used is simulation. </p><p>In the study, a simulation model of the baggage handling system was implemented in the simulation program Arena. A base scenario containing the traffic program from one week in 2004 was created and used as a reference scenario. A total of 8 different scenarios were created to form the capacity and sensitivity analyses. </p><p>The capacity analysis showed that the baggage handling system will be able to handle the forecasted increases in traffic over the next few years with relative ease. The X-ray machines are currently not working at anywhere near full capacity. However, the system is currently not being used in an efficient way. The pocket allocation method is far from optimal because flights that use more than one pocket are allocated adjacent pockets only which can be very inefficient. This method needs to be revised for the system to work efficiently. </p><p>The sensitivity analysis showed that the system is very vulnerable if certain things happen. In particular if the communication link with the Baggage Source Message-central in London is lost there will be big problems because all luggage will go to the Manual Encoding Station (MES). The MES will then be very digested and it will take a considerably larger amount of time for the baggage to pass through the system. Problems will also occur if one of the two Level 2 X-ray-machines break down. The remaining machine cannot handle all the baggage by itself, especially not if there are flights to the USA about to depart since baggage heading for the USA must be run through X-ray Level 2. It is strongly recommended that handling plans are formed to minimise the effects of such events.</p>
2

Kapacitets- och känslighetsanalys av bagagehanteringssystem på Arlanda flygplats / Capacity and sensitivity analysis of luggage handling system at Stockholm-Arlanda airport

Bernandersson, Martin January 2005 (has links)
Detta är en kapacitets- och känslighetsanalys av bagagehanteringssystem vid Arlanda flygplats. Studien är ett examensarbete för civilingenjörsutbildningen Kommunikations- och Transportsystem vid Linköpings universitet och är utförd på uppdrag av Luftfartsverket, LFV Teknik under 2004 och 2005. Studien har gjorts med datorstödd simulering som analysverktyg. Studien har gjorts genom att en simuleringsmodell av det studerade systemet har byggts i simuleringsprogrammet Arena. Denna modell har matats med trafikunderlag från en normalvecka under 2004. Utifrån denna modell och utifrån förväntade trafikökningar har sedan ett antal kapacitets- och känslighetsanalysscenarier formulerats och dessa har sedan simulerats och resultaten har tolkats och analyserats samt jämförts med resultaten från grundmodellen. Kapacitetsanalysen visar att anläggningen är väl rustad för att ta emot den annalkande trafikökning som förväntas under de närmaste åren, eftersom den ökade trafiken inte innebär några signifikanta problem genom ökat antal väskor som inte hinner med sina flighter. Det som dock kan vara en begränsande faktor är att fickallokeringssystemet inte är effektivt och det sänker anläggningens verkliga kapacitet. För att kunna nyttja anläggningen maximalt bör fickallokeringssystemet ses över. Känslighetsanalysen visar att systemet är mycket sårbart för störningar, särskilt om kommunikationen med BSM-centralen går ner eller om en Röntgen Level 2-maskin går sönder. Sådana händelser resulterar i att anläggningens kapacitet minskar kraftigt och i vissa fall klarar anläggningen inte av att hantera dagens trafikmängd. En handlingsplan för hur dessa störningar och konsekvenserna av dem ska minimeras bör införas snarast. / This is a capacity and sensitivity analysis of a baggage handling system at Stockholm-Arlanda airport. The study is a Master's Thesis in Communication and Transport Systems Engineering at the University of Linköping. The study was done on behalf of the Swedish Civil Aviation Administration. The analysis tool that was used is simulation. In the study, a simulation model of the baggage handling system was implemented in the simulation program Arena. A base scenario containing the traffic program from one week in 2004 was created and used as a reference scenario. A total of 8 different scenarios were created to form the capacity and sensitivity analyses. The capacity analysis showed that the baggage handling system will be able to handle the forecasted increases in traffic over the next few years with relative ease. The X-ray machines are currently not working at anywhere near full capacity. However, the system is currently not being used in an efficient way. The pocket allocation method is far from optimal because flights that use more than one pocket are allocated adjacent pockets only which can be very inefficient. This method needs to be revised for the system to work efficiently. The sensitivity analysis showed that the system is very vulnerable if certain things happen. In particular if the communication link with the Baggage Source Message-central in London is lost there will be big problems because all luggage will go to the Manual Encoding Station (MES). The MES will then be very digested and it will take a considerably larger amount of time for the baggage to pass through the system. Problems will also occur if one of the two Level 2 X-ray-machines break down. The remaining machine cannot handle all the baggage by itself, especially not if there are flights to the USA about to depart since baggage heading for the USA must be run through X-ray Level 2. It is strongly recommended that handling plans are formed to minimise the effects of such events.
3

Technical Verification and Validation of ADS-B/VDL Mode 4 for A-SMGCS / Teknisk verifiering och validering av ADS-B/VDL Mode 4 för A-SMGCS

Eriksson, Matts, Lundmark, Jonas January 2002 (has links)
This report is a technical verification and validation of ADS-B (Automatic Dependent Surveillance – Broadcast) over VDL Mode 4 (Very High Frequency Data Link Mode 4) for the use in the surveillance element of an A-SMGCS (Advanced Surface Movement Guidance and Control System). The main objective of this report is to examine if ADS-B/VDL Mode 4 fulfils the technical requirements for an implementation at Arlanda airport, Stockholm Sweden. The report also includes a FMECA (Failure Mode, Effects and Criticality Analysis), a theoretical background and methods for monitoring. The process of making this report can be divided into three phases: 1. Preliminary Study. In this phase the requirements were examined and structured. 2. Verification. In this phase the system performance has been verified both theoretically and by several tests at Arlanda Airport. Simulation results have also been used. 3. Validation and documentation. The tests and verifications that were performed in phase 2 were validated in the third phase of the project. The final project document was also written in this phase. The main conclusion from this analysis is that ADS-B/VDL Mode 4 is well suited for surveillance. ADS-B/VDL Mode 4 has the possibility to fulfil all considered requirements, apart from detecting all obstacles. But if all the requirements are going to be fulfilled depends both on the implementation and the operational environment. The results from this verification and validation should be used as the technical subset in a future safety case, both in Sweden and internationally.
4

Technical Verification and Validation of ADS-B/VDL Mode 4 for A-SMGCS / Teknisk verifiering och validering av ADS-B/VDL Mode 4 för A-SMGCS

Eriksson, Matts, Lundmark, Jonas January 2002 (has links)
<p>This report is a technical verification and validation of ADS-B (Automatic Dependent Surveillance – Broadcast) over VDL Mode 4 (Very High Frequency Data Link Mode 4) for the use in the surveillance element of an A-SMGCS (Advanced Surface Movement Guidance and Control System). </p><p>The main objective of this report is to examine if ADS-B/VDL Mode 4 fulfils the technical requirements for an implementation at Arlanda airport, Stockholm Sweden. The report also includes a FMECA (Failure Mode, Effects and Criticality Analysis), a theoretical background and methods for monitoring. </p><p>The process of making this report can be divided into three phases: </p><p>1. Preliminary Study. In this phase the requirements were examined and structured. </p><p>2. Verification. In this phase the system performance has been verified both theoretically and by several tests at Arlanda Airport. Simulation results have also been used. </p><p>3. Validation and documentation. The tests and verifications that were performed in phase 2 were validated in the third phase of the project. The final project document was also written in this phase. </p><p>The main conclusion from this analysis is that ADS-B/VDL Mode 4 is well suited for surveillance. ADS-B/VDL Mode 4 has the possibility to fulfil all considered requirements, apart from detecting all obstacles. But if all the requirements are going to be fulfilled depends both on the implementation and the operational environment. </p><p>The results from this verification and validation should be used as the technical subset in a future safety case, both in Sweden and internationally.</p>

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