灾难发生时移动网络的智能操作

R. Hofmann
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引用次数: 4

摘要

在发生自然灾害时,移动网络有望为搜索和救援行动提供附加价值。然而,这些网络及其服务并没有根据这种支持的需求进行优化。一个关键的方面是需要几个小时的备用电源可用性,这在交流电网因其他技术原因而中断时通常不需要。当运维中心通过智能软件包按照预先设定的应急计划重新配置网络时,可确保在灾难期间最大数量的并行紧急呼叫和语音呼叫的可用性。这也保证了基站的功耗最小化。实际威胁的性质决定了如何配置网络。服务优先级和硬件资源关闭等功能是该软件包的一部分,并根据预定义的边界条件自动运行。与正常运行相比,hw资源对交通状况的适应可以将所需的电池备用容量减少30%,并且在给定的时间段内必须进行桥接。结合像Li-Polymer这样的新电池技术,可以保证高能量密度,未来可以实现更小、更轻的备用电池设备。数字元件的更高集成度和功率放大器技术的进步将使基站功耗在未来两到三年内进一步降低40%,或多或少独立于移动通信标准。因此,对于农村地区的低容量基站,电池容量低于5kwh (105ah @ - 48v DC)将足以满足8小时的备用操作。对于这些应用,从体积和成本的角度来看,省略燃烧发电机组作为应急电源是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart operation of a mobile network in event of disaster
In the event of a natural disaster, mobile networks are expected to provide an added value to search and rescue operations. However, these networks and their services are not optimized with the requirements for this support in mind. A critical aspect is the need for several hours of backup power availability, something not usually required during AC grid outages resulting from other technical reasons. The availability of the maximum possible number of parallel emergency and voice calls during a disaster is ensured when the Operation & Maintenance Center reconfigures the network in accordance with a pre-defined emergency plan via a smart SW package. This also guarantees minimized power consumption by the basestations. The nature of the actual threat determines how the network has to be configured. Features such as prioritization of services and shut-down of hardware resources are part of this SW package and run automatically according to the pre-defined boundary conditions. The adaptation of HW-resources to the traffic situation can reduce the required battery backup capacity up to 30% in comparison to normal operation and for a given time period which has to be bridged. In combination with new battery technologies like Li-Polymer, which promise high energy densities, smaller and lighter battery backup devices can be realized in the future. Higher integration of digital components and advancements in power amplifier technology will yield a further reduction in basestation power consumption by up to 40% in the next two to three years, more or less independently of the mobile communication standard. Therefore, for low capacity basestations in rural areas, a battery capacity below 5 kWh (105 Ah @ -48 V DC) will be sufficient for eight hours of backup operation. For these applications, it will be feasible from a volume and cost point of view to omit combustion generation sets as emergency power sources.
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