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Spectrum Reorganization and Bundling for Power Efficient Mobile Networks

机译:节能移动网络的频谱重组和捆绑

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Technological improvements and evolving user requirements have led to operators running and supporting three distinct wireless access technologies, GSM, UMTS, and LTE. While the most recent layer (LTE) introduces improvements in spectral efficiency and peak data rates, the remaining layers are still required for supporting legacy devices and providing wider network coverage. In order to facilitate and reduce the cost of rolling out a new network, mobile operators often reuse existing sites. Radio frequency modules in base station sites house power amplifiers, which are designed to operate within a specific frequency band. Since some access technologies have spectrum split onto multiple bands, this results in operators installing multiple modules for each access technology. This paper quantifies the power savings that can be achieved by assuming that the available spectrum for an operator can be reorganized within a single band, and have multiple carriers bundled together to fully exploit the capabilities of modern equipment. These modifications are applied on all network layers, maintaining the same number of carriers and baseband capacity. For the presented case, this results in the elimination of at least four separate modules in each site, reducing the power consumption of by 31%. Indirectly, this also translates into a reduced site space of 40%. These savings are crucial for mobile network operators to reach the energy and carbon emission targets they have committed for.
机译:技术上的进步和不断发展的用户要求导致运营商运行并支持三种不同的无线接入技术,即GSM,UMTS和LTE。尽管最新层(LTE)引入了频谱效率和峰值数据速率方面的改进,但仍需要其余层来支持传统设备并提供更广泛的网络覆盖范围。为了促进和减少推出新网络的成本,移动运营商经常重用现有站点。基站站点中的射频模块装有功率放大器,功率放大器设计为在特定频带内运行。由于某些接入技术已将频谱划分为多个频带,因此导致运营商为每种接入技术安装多个模块。本文假设可以通过在一个频段内重组运营商的可用频谱,并将多个载波捆绑在一起以充分利用现代设备的功能,来量化可以实现的节电效果。这些修改将应用于所有网络层,并保持相同数量的载波和基带容量。对于所介绍的情况,这导致每个站点中至少消除了四个单独的模块,从而将功耗降低了31%。间接地,这也意味着减少了40%的站点空间。这些节省对于移动网络运营商实现其承诺的能源和碳排放目标至关重要。

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