Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss
碩士 === 國立中正大學 === 資訊工程所 === 98 === Media-Independent Pre-Authentication (MPA) is used as a secure handover optimization scheme working over any link layer. With MPA, a mobile node (the MN) can establish a security association with a candidate target network (CTN), obtain an IP address and other para...
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ndltd-TW-098CCU053920722015-10-13T18:25:49Z http://ndltd.ncl.edu.tw/handle/31172078207700026759 Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss 在預先認證平台上利用重新導向隧道防止封包遺失 Lun-huo Yeh 葉倫豪 碩士 國立中正大學 資訊工程所 98 Media-Independent Pre-Authentication (MPA) is used as a secure handover optimization scheme working over any link layer. With MPA, a mobile node (the MN) can establish a security association with a candidate target network (CTN), obtain an IP address and other parameters from the CTN, and complete the binding update of any mobility management protocol with the new care-of address (nCoA) before performing a handover at the link layer. This can significantly reduce handover delay. However, the packets transmitted to the MN may be lost if a link layer handover occurs due to the link going down before the MN completes the binding update. The possible simultaneous mobility problem also gives rise to undesirable handover delay. In this paper, we design a framework called redirect tunneling (RDT) by improving handover execution procedures of MPA. When a MN decides to perform handover at the link layer, it will request to create a RDT tunnel between its new access router (nAR) and old access router (oAR) after deleting the proactive handover tunnel (PHT) that created between the MN and new access router (nAR). Then data packets sent to the oAR will be forwarded to the MN with the nCoA via nAR. Then the nAR will start to buffer those packets until the MN sends an explicit signal to stop buffering and flushes the packets after completing handover at the link layer. In addition, we present a binding update retransmission mechanism in the RDT to resolve the loss problem of binding update packet (BUP) and binding update ACK (BUA). With this mechanism, we can prevent packet loss during the handover. Comparing with prior arts, such as dynamic buffering, the RDT can not only retain the superiority of MPA but also avoid the packet loss and packet delay problem. Wei-kuo Chiang 江為國 2010/08/ 學位論文 ; thesis 79 zh-TW |
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碩士 === 國立中正大學 === 資訊工程所 === 98 === Media-Independent Pre-Authentication (MPA) is used as a secure handover optimization scheme working over any link layer. With MPA, a mobile node (the MN) can establish a security association with a candidate target network (CTN), obtain an IP address and other parameters from the CTN, and complete the binding update of any mobility management protocol with the new care-of address (nCoA) before performing a handover at the link layer. This can significantly reduce handover delay. However, the packets transmitted to the MN may be lost if a link layer handover occurs due to the link going down before the MN completes the binding update. The possible simultaneous mobility problem also gives rise to undesirable handover delay. In this paper, we design a framework called redirect tunneling (RDT) by improving handover execution procedures of MPA. When a MN decides to perform handover at the link layer, it will request to create a RDT tunnel between its new access router (nAR) and old access router (oAR) after deleting the proactive handover tunnel (PHT) that created between the MN and new access router (nAR). Then data packets sent to the oAR will be forwarded to the MN with the nCoA via nAR. Then the nAR will start to buffer those packets until the MN sends an explicit signal to stop buffering and flushes the packets after completing handover at the link layer. In addition, we present a binding update retransmission mechanism in the RDT to resolve the loss problem of binding update packet (BUP) and binding update ACK (BUA). With this mechanism, we can prevent packet loss during the handover. Comparing with prior arts, such as dynamic buffering, the RDT can not only retain the superiority of MPA but also avoid the packet loss and packet delay problem.
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author2 |
Wei-kuo Chiang |
author_facet |
Wei-kuo Chiang Lun-huo Yeh 葉倫豪 |
author |
Lun-huo Yeh 葉倫豪 |
spellingShingle |
Lun-huo Yeh 葉倫豪 Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
author_sort |
Lun-huo Yeh |
title |
Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
title_short |
Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
title_full |
Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
title_fullStr |
Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
title_full_unstemmed |
Redirect Tunneling in Media-Independent Pre-Authentication for Preventing Packet Loss |
title_sort |
redirect tunneling in media-independent pre-authentication for preventing packet loss |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/31172078207700026759 |
work_keys_str_mv |
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