Wireless Access and Mobility Support for Automated Storage/Retrieval System and Logistics on Aluminum Profile

Article Preview

Abstract:

The preconditions of storage pre-schedule and real-time schedule management are wireless access and mobility support technology in aluminum profile logistic, which is vital for the automated storage/retrieval system(AS/RS) and logistics processes, such as intelligent warehousing and shipment. Understandings characters of the current wireless access technologies, applicability of networking mobility schemes, and their cooperation or compatibility with the Internet of things, decide the AS/RS and logistics structure and its whole efficiency. So the relational technologies and schemes are introduced in this paper from bottom to top according to Open System Interconnect seven layers protocols. It reveals that integration of multi-technologies was widely adopted in project implementation, which can be helpful to achieve high quality of mobile Internet access with lesser costs. Moreover, the feasibility of handover simplification and quality of service construction imply the success of schemes in design. Finally the strategic impact factors of the networking mobility support technology for AS/RS and logistics are concluded as overlapping coverage network optimization, delay tolerant network, and quality of service system based on user behavior.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1026-1031

Citation:

Online since:

November 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Sandberg, E., Kihlen, T., Abrahamsson, M., Characteristics of a Logistics-Based Business Model. Journal of Marketing Channels. 18(2011) 123-145.

DOI: 10.1080/1046669x.2011.558829

Google Scholar

[2] Ren, W., QoS‐aware and compromise‐resilient key management scheme for heterogeneous wireless Internet of Things. International Journal of Network Management. 21(2011) 284-299.

DOI: 10.1002/nem.794

Google Scholar

[3] Thiesse, F., Floerkemeier, C., Harrison, M., Michahelles, F., Roduner, C., Technology, Standards, and Real-World Deployments of the EPC Network. IEEE Internet Computing. 13(2009) 36-43.

DOI: 10.1109/mic.2009.46

Google Scholar

[4] Miraz, G.M., Ruiz, I.L., Gómez-Nieto, M., University of Things: Applications of Near Field Communication Technology in University Environments. Journal of E-working. 3(2009) 52-64.

Google Scholar

[5] Bohli, J.M., Sorge, C., Westhoff, D., Initial observations on economics, pricing, and penetration of the internet of things market. ACM SIGCOMM Computer Communication Review. 39(2009) 50-55.

DOI: 10.1145/1517480.1517491

Google Scholar

[6] Chang, T.Y., Hwang, M.S., User-anonymous and short-term Conference Key Distribution System via link-layer routing in mobile communications. International Journal of Mobile Communications. 9(2011) 144-158.

DOI: 10.1504/ijmc.2011.040143

Google Scholar

[7] K, E., Overview of mobile WiMAX technology and evolution. Communications magazine, IEEE. 46(2008) 31-40.

Google Scholar

[8] Ahmadi, S., An overview of next-generation mobile WiMAX technology. Communications Magazine, IEEE. 47(2009) 84-98.

DOI: 10.1109/mcom.2009.5116805

Google Scholar

[9] Wang, C., Xie, H., Wang, Z., Application research on three-dimensional virtual mine in the framework of internet of things. Journal of Coal Science and Engineering (China). 17(2011) 212-216.

DOI: 10.1007/s12404-011-0220-3

Google Scholar

[10] Frangoudis, P.A., Polyzos, G.C., Kemerlis, V.P., Wireless community networks: an alternative approach for nomadic broadband network access. Communications Magazine, IEEE. 49(2011) 206-213.

DOI: 10.1109/mcom.2011.5762819

Google Scholar

[11] Park, S., Kim, P.S. A new vertical handover mechanism for convergence of wired and wireless access networks. in: Proceedings of the 23rd international conference on Information Networking, Institute of Electrical and Electronics Engineers Inc. , New York, 2009, pp.102-107.

Google Scholar

[12] Campbell, A.T., Gomez, J., Kim, S., Valkó, A.G., Wan, C.Y., Turányi, Z.R., Design, implementation, and evaluation of cellular IP. IEEE Personal Communications. 7(2000) 42-49.

DOI: 10.1109/98.863995

Google Scholar

[13] Solouk, V., Ali, B.M., Khatun, S., Wong, K.D., Mahdi, M.A., Layer-2 Protocol Adaptation Method to Improve Fast Handoff for Mobile IPv6 Vertical Handoffs. Journal of Communications. 4(2009) 396.

DOI: 10.4304/jcm.4.6.396-403

Google Scholar

[14] Choi, H.Y., Kim, K.R., Lee, H.B., Min, S.G., Han, Y.H., Smart Buffering for seamless handover in Proxy Mobile IPv6. Wireless Communications and Mobile Computing. 144(2009): 6-21.

DOI: 10.1002/wcm.843

Google Scholar

[15] Baik, J.W., Kim, J.H., Lee, J.S., Lee, K.G. Inter-domain mobility support scheme using multicast in proxy mobile. In: Proceedings of the 6th IEEE Conference on Consumer Communications and Networking Conference, Institute of Electrical and Electronics Engineers Inc., 2009, pp.132-133.

DOI: 10.1109/ccnc.2009.4784808

Google Scholar

[16] Shih, C.H., Chen, Y.C. A Cross-Layering IPv6 Fast Handover Scheme for Real-Time Applications in IEEE 802. 16 e Network. in: 2009 Fifth International Joint Conference on INC, IMS and IDC. IEEE, 2009, p.2056-(2061).

DOI: 10.1109/ncm.2009.345

Google Scholar

[17] Dong P, Zhang H, Luo H, A network-based mobility management scheme for future Internet, Computers and Electrical Engineering. 43(2009)34-45.

Google Scholar

[18] Nam, S.H., Hwang, H., Kim, J.H., Lee, K.G. Fast Macro Handover in Hierarchical Mobile IPv6. in: Proceedings of the 2009 Eighth IEEE International Symposium on Network Computing and Applications, IEEE Computer Society, 2009, pp.323-326.

DOI: 10.1109/nca.2009.55

Google Scholar

[19] Yoo, S.J., Choi, S. -J., Su, D., Analysis of Fast Handover Mechanisms for Hierarchical Mobile IPv6 Network Mobility. Wireless Personal Communications. 48(2009) 215-238.

DOI: 10.1007/s11277-008-9518-x

Google Scholar

[20] Oh, H., Yoo, K., Na, J., Kim, C., A seamless handover scheme in IPv6-based mobile networks. International Journal of Ad Hoc and Ubiquitous Computing. 4(2009) 54-60.

DOI: 10.1504/ijahuc.2009.021914

Google Scholar

[21] Li, C.S., Lin, F., Chao, H.C., Routing optimization over network mobility with distributed home agents as the cross layer consideration. Telecommunication Systems. 42(2009) 63-76.

DOI: 10.1007/s11235-009-9169-6

Google Scholar

[22] Kim, H.Y., Chang, H., Jeong, Y.S., Intra domain route optimization for ubiquitous network. Personal and Ubiquitous Computing. 13(2009) 449-455.

DOI: 10.1007/s00779-009-0219-6

Google Scholar

[23] Weniger K, Bachman Jens. Optimized Reverse Tunnelling for Packet Handovered Mobile Communication Systems. United States Patent patent 11/993962, (2007).

Google Scholar

[24] Ayaz, S., Bauer, C., Arnal, F. Minimizing end-to-end delay in global haha networks considering aeronautical scenarios. In: Proceedings of the 7th ACM international symposium on Mobility management and wireless access, ACM, 2009, pp.42-49.

DOI: 10.1145/1641776.1641784

Google Scholar

[25] Yonghui Zhang, X.J., Zhangxi Lin A Pre-Anticipated Handover Seamless QoS Scheme for IEEE 802. 16e Based on Mobile Station Character Pattern. In: IEEE International Conference on Wireless Communications, Networking and Mobile Computing, IEEE, 2006, pp.81-85.

DOI: 10.1109/wicom.2006.364

Google Scholar

[26] Guan, J., Luo, H., Zhang, H., Chao, H.C., Park, J.H., Design and implementation of light-weight mobile multicast for fast MIPv6. Computer Communications. 32(2009) 552-559.

DOI: 10.1016/j.comcom.2008.07.011

Google Scholar

[27] Khaleda, Y., Tsukadaa, M., Santab, J., Choia, J.H., Ernsta, T., A usage oriented analysis of vehicular networks: from technologies to applications. Journal of Communications. 4(2009) 357.

DOI: 10.4304/jcm.4.5.357-368

Google Scholar

[28] Rüngeler, I., Tüxen, M., Rathgeb, E.P. Congestion and Flow Control in the Context of the Message-Oriented Protocol SCTP. In: Proceedings of the 8th International IFIP-TC 6 Networking Conference, Springer-Verlag, 2009, p.481.

DOI: 10.1007/978-3-642-01399-7_37

Google Scholar

[29] Leu, F.Y., A novel network mobility handoff scheme using SIP and SCTP for multimedia applications. Journal of Network and Computer Applications. 3423(2009)31-39.

DOI: 10.1016/j.jnca.2009.02.007

Google Scholar

[34] REN Yan, SU Wei, ZHANG Si-Dong, Research on Key Technology of Train-based Mobile Network. Journal of the China Railway Society , 2006, 28(1): 121-124. (In Chinese).

Google Scholar

[30] Wu, P.H., Chiu, K.L., Hwang, R.H. Solutions to Multihoming in IPv6 Based on MIPv6 and NEMO. Proceedings of the 2009 10th International Symposium on Pervasive Systems, Algorithms, and Networks, IEEE Computer Society, 2009, pp.290-295.

DOI: 10.1109/i-span.2009.54

Google Scholar

[31] Mohanty, S., Akyildiz, I.F., Performance analysis of handoff techniques based on mobile IP, TCP-migrate, and SIP. IEEE transactions on mobile computing. 6(2007) 731-747.

DOI: 10.1109/tmc.2007.1040

Google Scholar

[32] Liu, C., Cao, G., Spatial-temporal coverage optimization in wireless sensor networks. Mobile Computing, IEEE Transactions on. 99(2011) 1-11.

DOI: 10.1109/tmc.2010.172

Google Scholar

[33] Li, Y., Chen, W., Su, L., Jin, D., Zeng, L. Mobility management architecture based on integrated HIP and SIP protocols. In: Proceedings of the 16th international conference on Telecommunications, Institute of Electrical and Electronics Engineers Inc., 2009, pp.243-247.

DOI: 10.1109/ictel.2009.5158652

Google Scholar

[34] Demmer, M., Ott, J., Delay Tolerant Networking TCP Convergence Layer Protocol [S]. work in progress as an internetdraft, draft-irtf-dtnrg-tcp-clayer-02. (2008).

DOI: 10.17487/rfc7242

Google Scholar

[35] Subramanian, L., Surana, S., Patra, R., Nedevschi, S., Ho, M., Brewer, E., Sheth, A., Rethinking Wireless for the Developing World. Proceedings of Hot Topics in Networks, IEEE, 2006, p.34.

Google Scholar

[36] Yuan, R., Yuan, H., Chen, S., Sun, L., Qin, F., Zhang, H., Zhu, Y., Ma, D., Research on the k-Coverage Local Wireless Network and Its Communication Coordination Mechanism Design. Computer and Computing Technologies in Agriculture V. 368(2012).

DOI: 10.1007/978-3-642-27281-3_45

Google Scholar

[37] CHEN Xiao-mei, DANG Gang; SU Jin-shu. A Price-based QoS Model and Algorithm for Network Resource Allocation[J]. Journal of National University of Defense Technology. 29(2007)75-80. (In Chinese).

Google Scholar