Please use this identifier to cite or link to this item: http://repositorio.ufc.br/handle/riufc/60063
Type: Artigo de Evento
Title: Bernoulli Distribution Effects on ABS Pattern in Heterogeneous Networks
Title in English: Bernoulli Distribution Effects on ABS Pattern in Heterogeneous Networks
Authors: Melo, Yuri Victor Lima de
Maciel, Tarcísio Ferreira
Ponte, Kádmo Thadeu Hardy Lima
Keywords: ABS pattern;Bernoulli Distribution;e-ICIC;Het erogeneous Networks;Power Efficiency
Issue Date: 2018
Publisher: https://www.sbrt.org.br/sbrt2018
Citation: MELO, Yuri Victor Lima de; MACIEL, Tarcísio Ferreira; PONTE, Kádmo Thadeu Hardy Lima. Bernoulli distribution effects on ABS pattern in heterogeneous networks. In: SIMPÓSIO BRASILEIRO DE TELECOMUNICAÇÕES E PROCESSAMENTO DE SINAIS – SbrT, XXXVI., 16 a 19 set. 2018. Campina Grande-PB. Anais[…], Campina Grande-PB, 2018. p.291-295.
Abstract in Brazilian Portuguese: Almost Blank Subframe (ABS) is a technique which allows an interfering cell to mute some of its transmissions in selected subframes to reduce interference in these resources to other cells. The set of ABS is called ABS pattern. This way, ABS pattern properly configured can increase the system capacity, while ABS pattern unsuitable can generate significant interference and loss of capacity. In this work, we investigated the effects of the Bernoulli distribution in ABS pattern to Heterogeneous Network (HetNet). The Bernoulli distribution was chosen due to its simplicity of implementation, which allows an intuitive analysis of scenarios with and without ABS pattern. Also, it can be used as baseline for complex algorithms. Results indicate that the ABS pattern through Bernoulli distribution has different performances, depending on the parameterization of the distribution, which can provide capacity gains between 3.7 % and 10.4 % to the system.
Abstract: Almost Blank Subframe (ABS) is a technique which allows an interfering cell to mute some of its transmissions in selected subframes to reduce interference in these resources to other cells. The set of ABS is called ABS pattern. This way, ABS pattern properly configured can increase the system capacity, while ABS pattern unsuitable can generate significant interference and loss of capacity. In this work, we investigated the effects of the Bernoulli distribution in ABS pattern to Heterogeneous Network (HetNet). The Bernoulli distribution was chosen due to its simplicity of implementation, which allows an intuitive analysis of scenarios with and without ABS pattern. Also, it can be used as baseline for complex algorithms. Results indicate that the ABS pattern through Bernoulli distribution has different performances, depending on the parameterization of the distribution, which can provide capacity gains between 3.7 % and 10.4 % to the system.
URI: http://www.repositorio.ufc.br/handle/riufc/60063
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