...
首页> 外文期刊>Transactions on Emerging Telecommunications Technologies >Performance measurements of communication access technologies and improved cognitive radio model for smart grid communication
【24h】

Performance measurements of communication access technologies and improved cognitive radio model for smart grid communication

机译:通信访问技术的性能测量和改进的智能电网通信的认知无线电模型

获取原文
获取原文并翻译 | 示例
           

摘要

Abstract Traditional power grids have unidirectional power flow and often information transfer, this limits their capacity for scalability, efficiency, and renewable energy integration. Smart grids (SGs) are being developed as more intelligent power grids with bidirectional power flow and information interchange. A reliable communication network is required in order to realize some important SG features, such as renewable energy integration, distributed energy resources, scalability, self‐healing and efficient holistic monitoring, and control capability. However, this communication network needs to comply with critical requirements. Cognitive radio (CR) has been projected as a possible solution to common problems in conventional wireless systems such as spectrum scarcity and interference. The CR accesses a greater range of spectra via dynamic spectrum access capability. This paper focuses on the evaluation of communication access technologies performance measurements and improved CR model for SG communications. This paper employs the National Institute of Standard framework for SG interoperability, the low power wide area network (LPWAN), multihoming, and a CR device such as TV white space band devices (TVBDs). The results from simulation analysis show that the performance of TVBDs outperforms the legacy Wi‐Fi in terms of latency; also, LPWA devices, such as LTE Cat1/LTE‐M devices, outperform the legacy cellular, such as CDMA 1x‐EVDO, in terms of latency and throughput. In addition, the improved CR model, which involves a proposed channel fragmentation strategy–based Alamouti scheme, outperforms legacy CR in terms of blocking probability and throughput in the harsh SG environment.
机译:Abstract 传统电网具有单向功率流和通常,信息传输,这限制了它们的可伸缩性,效率和可再生能源整合的能力。智能电网(SG)正在开发为具有双向功率流和信息交换的更智能的电网。为了实现一些重要的SG功能,需要一个可靠的通信网络,例如可再生能源集成,分布式能源,可伸缩性,自我完成和有效的整体监控以及控制能力。但是,该通信网络需要遵守关键要求。认知无线电(CR)已被预测是解决常规无线系统(例如频谱稀缺和干扰)中常见问题的可能解决方案。 CR通过动态光谱访问能力访问更大范围的光谱。本文着重于评估通信访问技术性能测量和改进的SG通信模型。本文采用了美国国家标准互操作性标准框架,低功率广泛区域网络(LPWAN),多主教和CR设备,例如电视白空间带设备(TVBDS)。仿真分析的结果表明,TVBD的性能在延迟方面优于传统Wi -Fi。此外,就延迟和吞吐量而言,LPWA设备(例如LTE CAT1/LTE -M设备)优于旧细胞(例如CDMA 1X -EVDO)。此外,改进的CR模型涉及提出的基于基于ALAMOUTI的渠道碎片策略方案,在阻止刺激性SG环境中的概率和吞吐量方面优于传统CR。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号