期刊文献+

Adaptive Power Control for mutual Interference Avoidance in Industrial Internet-of-Things 被引量:1

Adaptive Power Control for mutual Interference Avoidance in Industrial Internet-of-Things
下载PDF
导出
摘要 With the vigorous development of the Internet of Things and 5G technology, such as machine-to-machine and device-todevice, all kinds of data transmission including environmental monitoring and equipment control strengthens the key role of wireless sensor networks in the large-scale wireless communication system. However, especially in the complex industrial wireless applications, the low utilization efficiency of the limited wireless radio resource enhances the coexistence problem between heterogeneous networks. In this paper, from the severe mutual interference point of view, a mathematical model regarding cumulative interferences in the industrial wireless sensor networks is described. Then, from the perspective of mutual interference avoidance, an adaptive power control scheme is proposed in order to handle the normal communication needs on both the primary link and the secondary link. At last, nonlinear programming is taken to solve the corresponding optimization problem. Some typical analyses are given to verify the effectiveness of the proposed scheme on optimizing the tradeoff between the system throughput and energy consumption. Especially, the energy-efficiency of the novel scheme for Industrial Internet of Things is also analysed. Results show that the proposed power control is efficient. The throughput could be enhanced and the energy consumption could be reduced with the guarantee of mutual interference avoidance. With the vigorous development of the Internet of Things and 5G technology, such as machine-to-machine and device-todevice, all kinds of data transmission including environmental monitoring and equipment control strengthens the key role of wireless sensor networks in the large-scale wireless communication system. However, especially in the complex industrial wireless applications, the low utilization efficiency of the limited wireless radio resource enhances the coexistence problem between heterogeneous networks. In this paper, from the severe mutual interference point of view, a mathematical model regarding cumulative interferences in the industrial wireless sensor networks is described. Then, from the perspective of mutual interference avoidance, an adaptive power control scheme is proposed in order to handle the normal communication needs on both the primary link and the secondary link. At last, nonlinear programming is taken to solve the corresponding optimization problem. Some typical analyses are given to verify the effectiveness of the proposed scheme on optimizing the tradeoff between the system throughput and energy consumption. Especially, the energy-efficiency of the novel scheme for Industrial Internet of Things is also analysed. Results show that the proposed power control is efficient. The throughput could be enhanced and the energy consumption could be reduced with the guarantee of mutual interference avoidance.
出处 《China Communications》 SCIE CSCD 2016年第S1期124-131,共8页 中国通信(英文版)
基金 partially supported by the Fundamental Research Funds for the Central Universities under Grant No.2015JBM001 the National Key Basic Research Program of China under Grant No. 2013CB329101
关键词 INDUSTRIAL WIRELESS SENSOR NETWORKS optimization power control mutual INTERFERENCE industrial wireless sensor networks optimization power control mutual interference
  • 相关文献

参考文献9

  • 1Rezha,F.P,Shin,S.Y.Performance analysis of isalOO.lla under interference from an IEEE802.11b wireless network. Industrial Informatics IEEE Transactions on . 2014
  • 2Stig Petersen,Simon Carlsen.WirelessHART Versus ISA100.11a The Format War Hits the Factory Floor. IEEE INDUSTRIAL ELECTRONICS MAGAZINE . 2011
  • 3Mahdi Pirmoradian,Christos Politis.CUMULATIVE INTERFERENCE. IEEE VEHICULAR TECHNOLOGY MAGAZINE . 2010
  • 4Clancy,T. Charles.Formalizing the interference temperature model. Wireless Communications and Mobile Computing . 2007
  • 5Barac,F,Caiola,S,Gidlund,M,Sisinni,E,Zhang,T.'Channel Diagnostics for Wireless Sensor Networks in Harsh Industrial Environments '. Sensors Journal,IEEE . 2014
  • 6Yang,D,Xu,Y,Wang,H,Zheng,I,Zhang,H,Zhang,H.et al.Assignment of segmented slots enabling reliable real-time transmission in industrial wireless sensor networks. IEEE Transactions on Industrial Electronics . 2015
  • 7Kumar S,Ovsthus K,Kristensen L M.An industrial perspective on w ireless sensor netw orks—a survey of requirements,protocols,and challenges. IEEE Communications Surveys&Tutorials . 2014
  • 8郑涛,秦雅娟,高德云,张宏科.基于图论的无线传感器网络并行禁忌搜索信道分配办法(英文)[J].China Communications,2011,8(3):73-82. 被引量:3
  • 9Yang,D,Wang,H,Zheng,T,Gidlund,M,Xu,Y,Zhang,H.Applying industrial wireless sensor networks to welder machine system. IPSN 2014-Proceedings of the 13th International Symposium on Information Processing in Sensor Networks (Part of CPS Week) . 2014

二级参考文献18

  • 1Mihaela Iridon,David Matula,Cheng Yang.A Graph Theoretic Approach for Channel Assignment in Cellular Networks[J]. Wireless Networks . 2001 (6)
  • 2ARAMPATZIS T,LYGEROS J,MANESIS S.A Survey of Applications of Wireless Sensors and Wireless Sensor Net- works. Proceedings of the 2005 IEEE International Symposium on Mediterrean Conference on Control and Au- tomation in Intelligent Control . 2005
  • 3IEEE.IEEE Standard for Information Technology- Tele- communications and Information Exchange between Sys- tems-Local and Metropolitan Area Networks-Specific Re- quirements Part 15. 4: Wireless Medium Access Control ( MAC) and Physical Layer ( PHY) Specificatio. IEEE Std 802. 15. 4-2006 ( Revision of IEEE Std 802. 15.4-2003) . 2006
  • 4AUDHYA G K,SINHA K,GHOSH S C,et al.A Survey on the Channel Assignment Problem in Wireless Networks. Wireless Communications and Mobile Computing . 2010
  • 5ANGRISANI L,BERTOCCO M,FORTIN D,et al.Ex- perimental Study of Coexistence Issues Between IEEE 802. 11b and IEEE 802. 15. 4 Wireless Networks. IEEE Transactions on Instrumentation and Measurement . 2008
  • 6SOO YOUNG S,JEONG SEOK K,HONG SEONG P.Packet Error Rate Analysis of ZigBee under Interferences of Multiple Bluetooth Piconets. Proceedings of the Vehicular Technology Conference,2009. VTC Spring 2009. IEEE 69th . 2009
  • 7SIKORA A,GROZA V F.Coexistence of IEEE802. 15. 4 with other Systems in the 2. 4 GHz-ISM-Band. Pro- ceedings of the 2005 IEEE Conference on Instrumentation and Measurement Technology,2005. IMTC 2005 . 2005
  • 8SHIN S,PARK H,KWON W.Packet Error Rate Analy- sis of IEEE 802. 15. 4 under Saturated IEEE 802. 11 b Network Interference. IEICE Transactions on Commu- nications . 2007
  • 9LO BELLO L,TOSCANO E.Coexistence Issues of Multi- ple Co-Located IEEE 802. 15. 4 /ZigBee Networks Run- ning on Adjacent Radio Channels in Industrial Environ- ments. IEEE Transactions on Industrial Informatics . 2009
  • 10LAW Y,HARTEL P,DEN HARTOG J,et al.Link-lay- er Jamming Attacks on S-MAC. Proceedings of the2nd European Workshop on Wireless Sensor Networks ( EWSN 2005) . 2005

共引文献2

同被引文献11

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部