支持公共安全动态频谱接入的频谱利用研究

R. Bacchus, Tanim M. Taher, K. Zdunek, D. Roberson
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引用次数: 49

摘要

用于公共安全通信的无线电对访问、可靠性和稳健性有一些最严格的要求。虽然无线技术在过去十年中取得了巨大的进步,但不幸的是,大部分公共安全基础设施都落后了。目前,警察和消防部门等使用的大多数陆地移动无线电(LMR)利用带宽效率低下的模拟调频无线电系统,尽管分配给这些应用的可用无线电频谱有限。此外,各种机构、司法管辖区和学科之间仍然存在许多互操作性问题;例如,州执法机关的无线电可能无法与联邦的通信。本文介绍了在芝加哥市的几个公共安全波段进行的光谱测量数据。给出并分析了几个月的入住率估计,并讨论了季节性/事件驱动的变化和趋势。结果表明,公共安全通道在正常日常运营期间的高峰占用率与相邻的商业LMR通道之间的占用率不平衡,而商业LMR通道的使用率要低得多。这表明在紧急情况下应用动态频谱接入技术以增加公共安全信道容量的潜在机会。此外,频谱利用数据可用于规划当前系统的扩展或优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrum Utilization Study in Support of Dynamic Spectrum Access for Public Safety
Radios for public safety communication have some of the most stringent requirements for access, reliability and robustness. While wireless technology has seen tremendous strides in the past decade, large parts of the public safety infrastructure have unfortunately lagged behind. Today the majority of the Land Mobile Radios (LMR) used by police and fire departments, among others, utilize bandwidth inefficient analog FM radio systems, despite the limited available radio spectrum allocated for these applications. Additionally, numerous interoperability issues continue to exist between the various agencies, jurisdictions and disciplines; for example, radios from the state law enforcement authorities may not be able to communicate with Federal ones. This paper presents data from spectral measurements carried out over several public safety bands in the city of Chicago. Occupancy estimates over a period of several months are given and analyzed, and seasonal/event-driven variation and trends are discussed. The results demonstrate an imbalance in occupancy between public safety channels, which show high peak occupancy during normal day to day operations, and adjacent commercial LMR channels, which have much lower usage. This indicates potential opportunities for the application of dynamic spectrum access techniques to increase the capacity of public safety channels during emergencies. Furthermore, the spectrum utilization data may be useful for planning for the expansion or optimization of present-day systems.
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