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Accurate Range-Free Localization for Anisotropic Wireless Sensor Networks

Published: 20 May 2015 Publication History

Abstract

Position information plays a pivotal role in wireless sensor network (WSN) applications and protocol/algorithm design. In recent years, range-free localization algorithms have drawn much research attention due to their low cost and applicability to large-scale WSNs. However, the application of range-free localization algorithms is restricted because of their dramatic accuracy degradation in practical anisotropic WSNs, which is mainly caused by large error of distance estimation. Distance estimation in the existing range-free algorithms usually relies on a unified per hop length (PHL) metric between nodes. But the PHL between different nodes might be greatly different in anisotropic WSNs, resulting in large error in distance estimation. We find that, although the PHL between different nodes might be greatly different, it exhibits significant locality; that is, nearby nodes share a similar PHL to anchors that know their positions in advance. Based on the locality of the PHL, a novel distance estimation approach is proposed in this article. Theoretical analyses show that the error of distance estimation in the proposed approach is only one-fourth of that in the state-of-the-art pattern-driven scheme (PDS). An anchor selection algorithm is also devised to further improve localization accuracy by mitigating the negative effects from the anchors that are poorly distributed in geometry. By combining the locality-based distance estimation and the anchor selection, a range-free localization algorithm named <underline>S</underline>elective <underline>M</underline>ultilateration (SM) is proposed. Simulation results demonstrate that SM achieves localization accuracy higher than 0.3r, where r is the communication radius of nodes. Compared to the state-of-the-art solution, SM improves the distance estimation accuracy by up to 57% and improves localization accuracy by up to 52% consequently.

References

[1]
James Aspnes, Tolga Eren, David Kiyoshi Goldenberg, A. Stephen Morse, Walter Whiteley, Yang Richard Yang, Brian D. O. Anderson, and Peter N. Belhumeur. 2006. A theory of network localization. IEEE Transactions on Mobile Computing 5, 12 (2006), 1663--1678.
[2]
Md. Zakirul Alam Bhuiyan, Guojun Wang, Jiannong Cao, and Jie Wu. 2014. Sensor placement with multiple objectives for structural health monitoring. ACM Transactions on Sensor Networks 10, 4 (2014), 68.
[3]
Gaddi Blumrosen, Bracha Hod, Tal Anker, Danny Dolev, and Boris Rubinsky. 2013. Enhancing RSSI-based tracking accuracy in wireless sensor networks. ACM Transactions on Sensor Networks 9, 3 (2013), 1--29.
[4]
Kai Bu, Qingjun Xiao, Zhixin Sun, and Bin Xiao. 2012. Toward collinearity-aware and conflict-friendly localization for wireless sensor networks. Computer Communications 35, 13 (2012), 1549--1560.
[5]
Liangyin Chen, Yu Gu, Shuo Guo, Tian He, Yuanchao Shu, Fan Zhang, and Jiming Chen. 2012. Group-based discovery in low-duty-cycle mobile sensor networks. In Proceedings of the 9th Annual IEEE Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks (SECON’12). 542--550.
[6]
Liangyin Chen, Shuo Guo, Yuanchao Shu, Fan Zhang, Yu Gu, Jiming Chen, and Tian He. 2011. Selective reference mechanism for neighbor discovery in low-duty-cycle wireless sensor networks. In Proceedings of the 9th ACM Conference on Embedded Networked Sensor Systems (SenSys’11). ACM, 367--368.
[7]
Jose A. Costa, Neal Patwari, and Alfred O. Hero III. 2006. Distributed weighted-multidimensional scaling for node localization in sensor networks. ACM Transactions on Sensor Networks (TOSN) 2, 1 (2006), 39--64.
[8]
Shibo He, Jiming Chen, and Youxian Sun. 2012. Coverage and connectivity in duty-cycled wireless sensor networks for event monitoring. IEEE Transactions on Parallel and Distributed Systems 23, 3 (2012), 475--482.
[9]
Tian He, Chengdu Huang, Brian M. Blum, John A. Stankovic, and Tarek F. Abdelzaher. 2005. Range-free localization and its impact on large scale sensor networks. ACM Transactions on Embedded Computing Systems 4, 4 (2005), 877--906.
[10]
Pei Huang, Chen Wang, and Li Xiao. 2012b. Improving end-to-end routing performance of greedy forwarding in sensor networks. IEEE Transactions on Parallel and Distributed Systems 23, 3 (2012), 556--563.
[11]
Renjie Huang, Wen-Zhan Song, Mingsen Xu, Nina Peterson, Behrooz Shirazi, and Richard LaHusen. 2012a. Real-world sensor network for long-term volcano monitoring: Design and findings. IEEE Transactions on Parallel and Distributed Systems 23, 2 (2012), 321--329.
[12]
Xiang Ji and Hongyuan Zha. 2004. Sensor positioning in wireless ad-hoc sensor networks using multidimensional scaling. In Proceedings of the 23rd IEEE International Conference on Computer Communications (Infocom’04), Vol. 4. IEEE, 2652--2661.
[13]
Takeshi Kubo, Atsushi Tagami, Teruyuki Hasegawa, Toru Hasegawa, and Jean C. Walrand. 2012. Range-free localization using grid graph extraction. In Proceedings of the 20th IEEE International Conference on Network Protocols (ICNP’12). 1--11.
[14]
Fabian Kuhn, Roger Wattenhofer, and Aaron Zollinger. 2008. Ad hoc networks beyond unit disk graphs. Wireless Networks 14, 5 (2008), 715--729.
[15]
H. T. Kung, Chit-Kwan Lin, Tsung-Han Lin, and Dario Vlah. 2009. Localization with snap-inducing shaped residuals (SISR): Coping with errors in measurement. In Proceedings of the 15th Annual International Conference on Mobile Computing and Networking (Mobicom’09). 333--344.
[16]
R. B. Langley. 1999. Dilution of precision. GPS World 10, 5 (1999), 52--59.
[17]
Sol Lederer, Yue Wang, and Jie Gao. 2009. Connectivity-based localization of large-scale sensor networks with complex shape. ACM Transactions on Sensor Networks (TOSN) 5, 4 (2009), 31.
[18]
Mo Li and Yunhao Liu. 2010. Rendered path: Range-free localization in anisotropic sensor networks with holes. IEEE/ACM Transactions on Networking 18, 1 (2010), 320--332.
[19]
Zang Li, Wade Trappe, Yanyong Zhang, and Badri Nath. 2005. Robust statistical methods for securing wireless localization in sensor networks. In Proceedings of the 4th International Symposium on Information Processing in Sensor Networks (IPSN’05). 91--98.
[20]
Zhuofan Liao, Jianxin Wang, Shigeng Zhang, Jiannong Cao, and Geyong Min. 2014. Minimizing movement for target coverage and network connectivity in mobile sensor networks. IEEE Transactions on Parallel and Distributed Systems 99 (2014), 1--14.
[21]
Hyuk Lim and Jennifer C. Hou. 2009. Distributed localization for anisotropic sensor networks. ACM Transactions on Sensor Networks 5, 2 (2009), 11:1--11:26.
[22]
Anfeng Liu, Ju Ren, Xu Li, Zhigang Chen, and Xuemin Sherman Shen. 2012. Design principles and improvement of cost function based energy aware routing algorithms for wireless sensor networks. Computer Networks 56, 7 (2012), 1951--1967.
[23]
Weizhong Luo, Jianxin Wang, Jiong Guo, and Jianer Chen. 2014. Parameterized complexity of Max-lifetime Target Coverage in wireless sensor networks. Theoretical Computer Science 518 (2014), 32--41.
[24]
Sudip Misra and Sweta Singh. 2012. Localized policy-based target tracking using wireless sensor networks. ACM Transactions on Sensor Networks 8, 3 (2012), 1:27.
[25]
Radhika Nagpal, Howard Shrobe, and Jonathan Bachrach. 2003. Organizing a global coordinate system from local information on an ad hoc sensor networks. In Proceedings of the 2nd International Workshop on Information Processing in Sensor Networks (IPSN’03). 333--348.
[26]
Miguel Navarro, Tyler W. Davis, Yao Liang, and Xu Liang. 2013. ASWP: A long-term WSN deployment for environmental monitoring. In Proceedings of the 12th International Conference on Information Processing in Sensor Networks (IPSN’13). 351--352.
[27]
Dragos Niculescu and Badri Nath. 2001. Ad-hoc positioning system (APS). In Proceedings of 2001 IEEE Global Telecommunications Conference (Globecom’01). 2926--2931.
[28]
Yi Shang, Wheeler Ruml, Ying Zhang, and Markus P. J. Fromherz. 2004a. Localization from connectivity in sensor networks. IEEE Transactions on Parallel and Distributed Systems 15, 11 (2004), 961--974.
[29]
Yi Shang, HongChi Shi, and Ahmed A.Ahmed. 2004b. Performance study of localization methods for ad-hoc sensor networks. In Proceedings of the 1st IEEE Conference on Mobile Ad-hoc and Sensor Systems (MASS’04). 184--193.
[30]
Guang Tan, Hongbo Jiang, Shengkai Zhang, and Anne-Marie Kermarrec. 2010. Connectivity-based and anchor-free localization in large-scale 2d/3d sensor networks. In Proceedings of the 11th ACM Interational Symposium on Mobile Ad Hoc Networking and Computing (MobiHoc’10). 191--200.
[31]
Chen Wang and Li Xiao. 2008. Sensor localization in concave environments. ACM Transactions on Sensor Networks 4, 1 (2008), 3:1--3:31.
[32]
Guojun Wang, Md. Zakirul Alam Bhuiyan, Jiannong Cao, and Jie Wu. 2014. Detecting movements of a target using face tracking in wireless sensor networks. IEEE Transactions on Parallel and Distributed Systems 25, 4 (2014), 939--949.
[33]
Xiaoping Wang, Jun Luo, Yunhao Liu, Shanshan Li, and Dezun Dong. 2011. Component-based localization in sparse wireless networks. IEEE/ACM Transactions on Networking 19, 2 (2011), 540--548.
[34]
Yun Wang, Kai Li, and Jie Wu. 2010. Distance estimation by constructing the virtual ruler in anisotropic sensor networks. In Proceedings of 29th IEEE International Conference on Computer Communications (Infocom’10). 1172--1180.
[35]
Guang Wu, Shu Wang, Bang Wang, Yan Dong, and Shu Yan. 2012. A novel range-free localization based on regulated neighborhood distance for wireless ad hoc and sensor networks. Computer Networks 56, 16 (2012), 3581--3593.
[36]
Bin Xiao, Lin Chen, Qingjun Xiao, and Minglu Li. 2010a. Reliable anchor-based sensor localization in irregualr areas. IEEE Transactions on Mobile Computing 9, 1 (2010), 92--102.
[37]
Qingjun Xiao, Kai Bu, Zhijun Wang, and Bin Xiao. 2013. Robust localization against outliers in wireless sensor networks. ACM Transactions on Sensor Networks 9, 2 (2013), 1--24.
[38]
Qingjun Xiao, Bin Xiao, Jiannong Cao, and Jianping Wang. 2010b. Multihop range-free localization in anisotropic wireless sensor networks: A pattern-driven scheme. IEEE Transactions on Mobile Computing 9, 11 (2010), 1592--1607.
[39]
Zheng Yang and Yunhao Liu. 2010. Quality of trilateration: Confidence-based iterative localization. IEEE Transactions on Parallel and Distributed Systems 21, 5 (2010), 631--640.
[40]
R. Yarlagadda, I. Ali, N. Al-Dhahir, and J. Hershey. 2002. Gps gdop metric. In IEE Proceedings: Radar, Sonar and Navigation. 259--264.
[41]
Shigeng Zhang, Jiannong Cao, Lijun Chen, and Daoxu Chen. 2010. Accurate and energy-efficient range-free localization for mobile sensor networks. IEEE Transactions on Mobile Computing 9, 6 (2010), 897--910.
[42]
Shigeng Zhang, Jianxin Wang, Xuan Liu, and Jiannong Cao. 2012. Range-free selective multilateration for anisotropic wireless sensor networks. In Proceedings of the 9th Annual IEEE Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks (SECON’12). 299--307.
[43]
Shigeng Zhang, Shuping Yan, Weitao Hu, Jianxin Wang, and Kehua Guo. 2015. A component-based localization algorithm for sparse sensor networks combining angle and distance information. KSII Transactions on Internet and Information Systems 9, 3 (2015), 1014--1034.
[44]
Jin Zheng, Md. Zakirul Alam Bhuiyan, Shaohua Liang, Xiaofei Xing, and Guojun Wang. 2014. Auction-based adaptive sensor activation algorithm for target tracking in wireless sensor networks. Future Generation Computer Systems 39 (2014), 88--99.
[45]
Ziguo Zhong and Tian He. 2011. RSD: A metric for achieving range-free localization beyond connectivity. IEEE Transactions on Parallel and Distributed Systems 22, 11 (2011), 1943--1951.
[46]
Xiaojun Zhu, Xiaobing Wu, and Guihai Chen. 2012b. Refining hop--count for localisation in wireless sensor networks. International Journal of Sensor Networks 12, 4 (2012), 232--243.
[47]
Ying Zhu, Minsu Huang, Siyuan Chen, and Yu Wang. 2012a. Energy-efficient topology control in cooperative ad hoc networks. IEEE Transactions on Parallel and Distributed Systems 23, 8 (2012), 1480--1491.

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Published In

cover image ACM Transactions on Sensor Networks
ACM Transactions on Sensor Networks  Volume 11, Issue 3
May 2015
400 pages
ISSN:1550-4859
EISSN:1550-4867
DOI:10.1145/2737802
  • Editor:
  • Chenyang Lu
Issue’s Table of Contents
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Publication History

Published: 20 May 2015
Accepted: 01 March 2015
Revised: 01 December 2014
Received: 01 April 2014
Published in TOSN Volume 11, Issue 3

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Author Tags

  1. Wireless sensor networks
  2. anchor selection
  3. anisotropic wireless networks
  4. localization
  5. range-free

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  • Research-article
  • Research
  • Refereed

Funding Sources

  • International Science & Technology Cooperation Program of China (2013DFB10070)
  • EU FP7 QUICK project (PIRSES-GA-2013-612652)
  • National Science Foundation of China (61103203, 61173169, 61332004, and 61420106009)
  • Hong Kong RGC General Research

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  • (2024)Distance correction range-free localization algorithm for WSNsAin Shams Engineering Journal10.1016/j.asej.2024.10292415:9(102924)Online publication date: Sep-2024
  • (2023)Enhancement of Network Lifetime by Adding Pollination Algorithm with Optimization Technique for WSN2023 World Conference on Communication & Computing (WCONF)10.1109/WCONF58270.2023.10235044(1-6)Online publication date: 14-Jul-2023
  • (2023)Range-Free Localization Using Extreme Learning Machine and Ring-Shaped Salp Swarm Algorithm in Anisotropic NetworksIEEE Internet of Things Journal10.1109/JIOT.2022.323097110:9(8228-8244)Online publication date: 1-May-2023
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  • (2022)Deer Hunting Optimization-Enabled Multi-objective Range-Free Anchor-Based Localization in WSNAdvances in Distributed Computing and Machine Learning10.1007/978-981-19-1018-0_13(143-153)Online publication date: 28-Jul-2022
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