期刊文献+

2.4 GHz无线技术的干扰和共存研究

Research on Interference and Coexistence of 2.4 GHz Wireless Technology
下载PDF
导出
摘要 蓬勃发展的物联网应用需求中孕育了多种2.4 GHz无线通信协议,众多共存的无线协议既是物联网设备、平台互联互通的基础,也是通信系统干扰来源,导致通信效率降低。因此,2.4 GHz频段的干扰与共存技术成为行业内一个研究热点。本文介绍了Zigbee、蓝牙和Wi-Fi等无线通信技术及其抗干扰特性,通过分析共存环境的复杂性和关键性,简化仿真模型,提出了2.4 GHz频率共存的关键性能指标,讨论了如何保证2.4 GHz无线技术的共存性能,对物联网更广泛互联互通发展具有重要意义。 The booming application requirements of the Internet of things call for a variety of 2.4 GHz wireless communication protocols.Many co-existing wireless protocols are not only the basis of the interconnection of devices and platforms of the Internet of things,but also the source of interference in the communication system,resulting in the reduction of communication efficiency.Therefore,the interference and coexistence technology of 2.4 GHz band has become a research hot topic in the industry.This paper introduces the wireless communication technologies such as Zigbee,Bluetooth and Wi-Fi and their anti-jamming characteristics.By analyzing the complexity and criticality of coexistence environment,simplifying the simulation model,this paper puts forward the key performance index of 2.4 GHz frequency coexistence,and discusses how to ensure the coexistence performance of 2.4 GHz wireless technology,which is of great significance to the wider development of the Internet of things.
出处 《日用电器》 2024年第7期12-15,35,共5页 ELECTRICAL APPLIANCES
基金 智能医疗设备与无线设备共存合格评定技术研究,项目编号:SCRV2022071。
关键词 2.4 GHz 干扰与共存 互联互通 无线通信协议 2.4 GHz interference and coexistence interconnection wireles s communication protocols
  • 相关文献

参考文献2

二级参考文献83

  • 1IEEE Standard Association. IEEE standard 802. 11 [S].Piscataway,NJ : IEEE, 2012. 被引量:1
  • 2IEEE Standard Association. IEEE Standard 802. 15. 4 [S].Piscataway, NJ: IEEE,2003. 被引量:1
  • 3IEEE Standard Association. IEEE standard 802. 15. 1 [S].Piscataway, NJ: IEEE, 2005. 被引量:1
  • 4Musaloiu E R, Terzis A. Minimising the effect of WiFiinterference in 802. 15. 4 wireless sensor networks [J].International Journal of Sensor Networks, 2008,3(1): 43-54. 被引量:1
  • 5Hauer J H,Handziski V,Wolisz A. Experimental Study ofthe Impact of WLAN Interference on IEEE 802. 15. 4 BodyArea Networks [M]. Berlin: Springer, 2009. 被引量:1
  • 6Liang C J M, Priyantha N B, Liu J,et al. Surviving wi-fiinterference in low power ZigBee networks [C] //Proc of the8th. ACM Conf on Embedded Networked Sensor Systems.New York: ACM, 2010: 309-322. 被引量:1
  • 7So J, Vaidya N H. Multi-channel MAC for ad hoc networks:Handling multi-channel hidden terminals using a singletransceiver [C] //Proc of the 5th ACM Int Symp on MobileAd Hoc Networking and Computing. New York: ACM,2004: 222-233. 被引量:1
  • 8Zhou G, Huang C, Yan T, et al. MMSN: Multi-frequencymedia access control for wireless sensor networks [C] //Procof the 25th IEEE Int Conf on Computer Communications.Piscataway, NJ : IEEE, 2006 : 1-13. 被引量:1
  • 9Zhang J,Zhou G, Huang C, et al. TMMAC: An energyefficient multi-channel MAC protocol for ad hoc networks[C] //Proc of IEEE ICC 2007. Piscataway, NJ: IEEE,2007: 3554-3561. 被引量:1
  • 10Le H K,Henriksson D, Abdelzaher T. A control theoryapproach to throughput optimization in multi-channelcollection sensor networks [C] //Proc of the 6th Int Conf onInformation Processing in Sensor Networks. New York:ACM, 2007: 31-40. 被引量:1

共引文献16

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