2020年4月24日 星期五

Paper List

Zigbee
  1. Li-Hsing Yen and Wei-Ting Tsai, "The Room Shortage Problem of Tree-Based ZigBee/IEEE802.15.4 Wireless Networks," Computer Communications, October 2009.

  2. Meng-Shiuan Pan, Chia-Hung Tsai, and Yu-Chee Tseng, "The Orphan Problem in ZigBee Wireless Networks," IEEE Transactions on Mobile Computing, Mar 2009.

  3. Lain-Jinn Hwang, Shiann-Tsong Sheu, Yun-Yen Shih, and Yen-Chieh Cheng, "Grouping Strategy for Solving Hidden Node Problem in IEEE 802.15.4 LR-WPAN," Proceedings of the First International Conference on Wireless Internet, pp. 26-32, July 2005.

  4. Anis Koubâa, André Cunha, Mário Alves, and Eduardo Tovar, "TDBS: a time division beacon scheduling mechanism for ZigBee cluster-tree wireless sensor networks," Real-Time Systems, vol. 40, pp. 321-354, October 2008.

  5. Lun-Wu Yeh, Meng-Shiuan Pan, Yu-Chee Tseng, "Two-Way Beacon Scheduling in ZigBee Tree-BasedWireless Sensor Networks," IEEE International Conference on Sensor Networks, Ubiquitous, and Trustworthy Computing, pp. 130-137, June 2008.

  6. M.-S. Pan, H.-W. Fang, Y.-C. Liu, and Y.-C. Tseng, "Address Assignment and Routing Schemes for ZigBee-Based Long-Thin Wireless Sensor Networks," IEEE Vehicular Technology Conference, pp. 173-177, 2008.

  7. Jin-Woo Kim, Jihoon Kim, and Doo-Seop Eom, "Multi-Dimensional Channel Management Scheme to Avoid Beacon Collision in LR-WPAN," IEEE Transactions on Consumer Electronics, vol. 54, pp. 396-404, 2008.

  8. Bing Han and Gwendal Simon, "Optimizing Multi-hop Queries in ZigBee Based Multi-sink Sensor Networks," Lecture Notes In Computer Science, Vol. 5408, pp. 294-305, 2009.
Wireless Sensor Network
  1. Bing-Hong Liu, Wei-Chieh Ke, Chin-Hsien Tsai, and Ming-Jer Tsai, "Constructing a Message-Pruning Tree with Minimum Cost for Tracking Moving Objects in Wireless Sensor Networks is NP-Complete and an Enhanced Data Aggregation Structure," IEEE Transactions on Computers, vol. 57, pp. 849-863, June 2008.

  2. Mário Macedo, António Grilo, and Mário Nunes, "Distributed Latency-Energy Minimization and interference avoidance in TDMA Wireless Sensor Networks," Computer Networks: The International Journal of Computer and Telecommunications Networking, vol. 53, pp. 569-582, April 2009.

  3. Bing Han, J. Leblet, and G. Simon, "Query range problem in wireless sensor networks," IEEE Communications Letters, vol. 13, pp. 55-57, January 2009.
IEEE 802.11 WLANs
  1. Huazhi Gong, Kitae Nahm, and JongWon Kim, "Distributed Fair Access Point Selection for Multi-Rate IEEE 802.11 WLANs," 5th IEEE Consumer Communications and Networking Conference, pp. 528-532, January 2008.

  2. Huazhi Gong and JongWon Kim, "Dynamic Load Balancing through Association Control of Mobile Users in WiFi Networks," IEEE Transactions on Consumer Electronics, Vol. 54, No. 2, MAY 2008.

  3. [MBS08] Kimaya Mittala, Elizabeth M. Beldingb, and Subhash Suri, "A game-theoretic analysis of wireless access point selection by mobile users," January 2008.
Game Theory
  1. [CMC08] M. Cesana, I. Malanchini, and A. Capone, "Modelling Network Selection and Resource Allocation in Wireless Access Networks with Non-Cooperative Games," 5th IEEE International Conference on Mobile Ad Hoc and Sensor Systems, pp. 404-409, October 2008.

  2. M. Cesana, N. Gatti, and I. Malanchini, "Game Theoretic Analysis of Wireless Access Network Selection: Models, Inefficiency Bounds, and Algorithms," International Conference On Performance Evaluation Methodologies And Tools & Workshops, 2008.

  3. [JPW08] Libin Jiang, S. Parekh, and J. Walrand, "Base Station Association Game in Multi-cell Wireless Networks," IEEE Wireless Communications and Networking Conference, pp. 1616-1621, March 2008.

  4. S. Shakkottai, E. Altman, and A. Kumar, "Multihoming of Users to Access Points in WLANs: A Population Game Perspective," Multihoming of Users to Access Points in WLANs: A Population Game Perspective, pp. 1207-1215, October 2007.

  5. [Ros73] R. W. Rosenthal, "A Class of Games Possessing Pure-Strategy Nash Equilibria," International Journal of Game Theory, vol. 2, no. 1, pp. 65-67, December 1973.

  6. [Mil96] I. Milchtaich, "Congestion Games with Player-Specific Payoff Functions," Games and Economic Behavior, vol. 13, pp. 111-124, March 1996.

  7. D. Niyato, and E. Hossain, “Dynamics of Network Selection in Heterogeneous Wireless Networks: An Evolutionary Game Approach,” IEEE Trans. Vehicular Technology, vol.58, no.4, pp.2008-2017, May 2009.

  8. Elias Koutsoupias and Christos Papadimitriou, "Worst-case equilibria," Computer Science Review, vol. 3, Issue 2, pp. 65-69, May 2009.

  9. [MS96] D. Monderer and L. S. Shapley, "Potential Games," Games and Economic Behavior 14, pp. 124–143, 1996.
Coverage Game or Problem
  1. [ZM09]M. Zhu and S. Mart´ınez, "Distributed coverage games for mobile visual sensors (I): Reaching the set of Nash equilibria," Joint 48th IEEE Conference on Decision and Control and 28th Chinese Control Conference, pp. 169-174, December 2009.

  2. [CTL+05]M. Cardei, M. T. Thai, Y. Li, and W. Wu, "Energy-Efficient Target Coverage in Wireless Sensor Networks," IEEE Infocom, 2005, pp.1976–1984.

  3. [LG08]Y. Li and S. Gao, "Designing k-Coverage Schedules in Wireless Sensor Networks," Journal of Combinatorial Optimization, vol. 15, pp. 127–146, 2008.

  4. [AST08]X. Ai, V. Srinivasan and C. Tham, "Optimality and Complexity of Pure Nash Equilibria in the Coverage Game," IEEE Journal on Selected Areas in Communications, vol. 26, no. 7, pp. 1170 - 1182, September 2008.

  5. [CD05]M. Cardei and D. Du, "ImprovingWireless Sensor Network Lifetime through Power Aware Organization," Wireless Networks, vol. 11, no. 3, pp. 333-340, May 2005.

  6. [CP09]M. Chaudhary and A. K. Pujari, "Q-Coverage Problem in Wireless Sensor Networks," Proceedings of the 10th International Conference on Distributed Computing and Networking, Vol. 5408, pp. 325 - 330 , 2009.

4 則留言:

  1. 最好還是要加上作者和出版資訊, 像國瑋列出的那樣.

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  2. 期末考完我會更新 Thanks

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  3. ZigBee 第一篇的出處也要更新了...

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  4. Dynamic Load Balancing through Association Control of Mobile Users in WiFi Networks

    這一篇的心得還沒貼出
    再拖下去你一定會忘掉...

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