406 research outputs found
Resource Allocation Frameworks for Network-coded Layered Multimedia Multicast Services
The explosive growth of content-on-the-move, such as video streaming to
mobile devices, has propelled research on multimedia broadcast and multicast
schemes. Multi-rate transmission strategies have been proposed as a means of
delivering layered services to users experiencing different downlink channel
conditions. In this paper, we consider Point-to-Multipoint layered service
delivery across a generic cellular system and improve it by applying different
random linear network coding approaches. We derive packet error probability
expressions and use them as performance metrics in the formulation of resource
allocation frameworks. The aim of these frameworks is both the optimization of
the transmission scheme and the minimization of the number of broadcast packets
on each downlink channel, while offering service guarantees to a predetermined
fraction of users. As a case of study, our proposed frameworks are then adapted
to the LTE-A standard and the eMBMS technology. We focus on the delivery of a
video service based on the H.264/SVC standard and demonstrate the advantages of
layered network coding over multi-rate transmission. Furthermore, we establish
that the choice of both the network coding technique and resource allocation
method play a critical role on the network footprint, and the quality of each
received video layer.Comment: IEEE Journal on Selected Areas in Communications - Special Issue on
Fundamental Approaches to Network Coding in Wireless Communication Systems.
To appea
Joint Resource Allocation for eICIC in Heterogeneous Networks
Interference coordination between high-power macros and low-power picos
deeply impacts the performance of heterogeneous networks (HetNets). It should
deal with three challenges: user association with macros and picos, the amount
of almost blank subframe (ABS) that macros should reserve for picos, and
resource block (RB) allocation strategy in each eNB. We formulate the three
issues jointly for sum weighted logarithmic utility maximization while
maintaining proportional fairness of users. A class of distributed algorithms
are developed to solve the joint optimization problem. Our framework can be
deployed for enhanced inter-cell interference coordination (eICIC) in existing
LTE-A protocols. Extensive evaluation are performed to verify the effectiveness
of our algorithms.Comment: Accepted by Globecom 201
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Cost efficient 5G heterogeneous base station deployment using meta-heuristics
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University LondonOver the last two decades, the telecommunication industry has witnessed sustained growth in the number of mobile user devices driven by the introduction of data services, the take-off of the internet and smart user equipment. This growth, which is forecasted to continue, has continued to push the data transfer capacity requirement on mobile networks and has motivated research into the design of 5th generation (5G) mobile networks. A key concern in the design of 5G is the infrastructure and power consumption cost of the base station network which is expected to be significantly more advanced and dense than that of existing conventional mobile networks. This thesis presents an optimisation framework for the cost efficient design of 5G base station networks, based on the application of meta-heuristic algorithms.
The presented optimisation framework is centred on the ability to exploit three key technologies of 5G, a heterogonous base station network with small-cells, multi-antenna spatial multiplexing MIMO and cell range extension. The framework includes mathematical integer programming models for supporting the decisions about the optimal base station topology in a 5G mobile network and provides a clear core for the application of meta-heuristics for optimising 5G base station deployment. The core optimisation framework includes the definition of solution encoding/decoding and fitness mechanisms. To increase power consumption awareness of base station network design, an independent base station deployment strategy has been presented and evaluated. Simulation results show that the strategy can improve base station network design power consumption by as much as 34%.
The work in this thesis has been extensively evaluated using a simulated 5G mobile network system model. Evaluations of algorithms have been performed through empirical measurements. The main contribution of this thesis is the definition of a clear framework for application fitness based heuristic search in the design of 5G mobile networks
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Self-organising network management for heterogeneous LTE-advanced networks
This thesis was submitted for the award of Doctor of Philosophy and awarded by Brunel University LondonSince 2004, when the Long Term Evolution (LTE) was first proposed to be publicly available in the year 2009, a plethora of new characteristics, techniques and applications have been constantly enhancing it since its first release, over the past decade. As a result, the research aims for LTE-Advanced (LTE-A) have been released to create a ubiquitous and supportive network for mobile users. The incorporation of heterogeneous networks (HetNets) has been proposed as one of the main enhancements of LTE-A systems over the existing LTE releases, by proposing the deployment of small-cell applications, such as femtocells, to provide more coverage and quality of service (QoS) within the network, whilst also reducing capital expenditure. These principal advantages can be obtained at the cost of new challenges such as inter-cell interference, which occurs when different network applications share the same frequency channel in the network. In this thesis, the main challenges of HetNets in LTE-A platform have been addressed and novel solutions are proposed by using self-organising network (SON) management approaches, which allows the cooperative cellular systems to observe, decide and amend their ongoing operation based on network conditions. The novel SON algorithms are modelled and simulated in OPNET modeler simulation software for the three processes of resource allocation, mobility management and interference coordination in multi-tier macro-femto networks. Different channel allocation methods based on cooperative transmission, frequency reuse and dynamic spectrum access are investigated and a novel SON sub-channel allocation method is proposed based on hybrid fractional frequency reuse (HFFR) scheme to provide dynamic resource allocation between macrocells and femtocells, while avoiding co-tier and cross-tier interference. Mobility management is also addressed as another important issue in HetNets, especially in hand-ins from macrocell to femtocell base stations. The existing research considers a limited number of methods for handover optimisation, such as signal strength and call admission control (CAC) to avoid unnecessary handovers, while our novel SON handover management method implements a comprehensive algorithm that performs sensing process, as well as resource availability and user residence checks to initiate the handover process at the optimal time. In addition to this, the novel femto over macro priority (FoMP) check in this process also gives the femtocell target nodes priority over the congested macrocells in order to improve the QoS at both the network tiers. Inter-cell interference, as the key challenge of HetNets, is also investigated by research on the existing time-domain, frequency-domain and power control methods. A novel SON interference mitigation algorithm is proposed, which is based on enhanced inter-cell interference coordination (eICIC) with power control process. The 3-phase power control algorithm contains signal to interference plus noise ratio (SINR) measurements, channel quality indicator (CQI) mapping and transmission power amendments to avoid the occurrence of interference due to the effects of high transmission power. The results of this research confirm that if heterogeneous systems are backed-up with SON management strategies, not only can improve the network capacity and QoS, but also the new network challenges such as inter-cell interference can also be mitigated in new releases of LTE-A network
Cost based optimization for strategic mobile radio access network planning using metaheuristics
La evolución experimentada por las comunicaciones móviles a lo largo de las últimas
décadas ha sido motivada por dos factores principales: el surgimiento de nuevas aplicaciones
y necesidades por parte del usuario, así como los avances tecnológicos. Los
servicios ofrecidos para términales móviles han evolucionado desde el clásico servicio
de voz y mensajes cortos (SMS), a servicios más atractivos y por lo tanto con una
rápida aceptación por parte de usuario final como, video telephony, video streaming,
online gaming, and the internet broadband access (MBAS). Todos estos nuevos servicios
se han convertido en una realidad gracias a los avances técnologicos, avances
tales como nuevas técnicas de acceso al medio compartido, nuevos esquemas de codificiación
y modulación de la información intercambiada, sistemas de transmisión y
recepción basados en múltiples antenas (MIMO), etc.
Un aspecto importante en esta evolución fue la liberación del sector a principios de
los años 90, donde la función reguladora llevado a cabo por las autoridades regulatorias
nacionales (NRA) se ha antojado fundamental. Uno de los principales problemas
tratados por la NRA espcífica de cada nación es la determinación de los costes por
servicios mayoristas, esto es los servicios entre operadores de servicios móvilles, entre
los que cabe destacar el coste por terminación de llamada o de inteconexión. El
servicio de interconexión hace posible la comunicación de usuarios de diferente operadores,
así como el acceso a la totalidad de servicios, incluso a aquellos no prestados
por un operador en concreto gracias al uso de una red perteneciente a otro operador,
por parte de todos los usuarios.
El objetivo principal de esta tesis es la minimización de los costes de inversión en
equipamiento de red, lo cual repercute en el establecimiento de las tarifas de interconexión
como se verá a lo largo de este trabajo. La consecución de dicho objetivo
se divide en dos partes: en primer lugar, el desarrollo de un conjunto de algoritmos
para el dimesionado óptimo de una red de acceso radio (RAN) para un sistema de
comunicaciones móvilles. En segundo lugar, el diseño y aplicación de algoritmos de
optimización para la distribución óptima de los servicios sobre el conjunto de tecnologías
móviles existentes (OSDP).
El modulo de diseño de red proporciona cuatro algoritmos diferenciados encargados
del dimensionado y planificación de la red de acceso móvil. Estos algoritmos se aplican
en un entorno multi-tecnología, considerando sistemas de segunda (2G), tercera
(3G) y cuarta (4G) generación, multi-usuario, teniendo en cuenta diferentes perfiles
de usuarios con su respectiva carga de tráfico, y multo-servicio, incluyendo voz, servicios
de datos de baja velocidad (64-144 Kbps), y acceso a internet de banda ancha
móvil.
La segunda parte de la tesis se encarga de distribuir de una manera óptima el conjunto
de servicios sobre las tecnologías a desplegar. El objetivo de esta parte es
hacer un uso eficiente de las tecnologías existentes reduciendo los costes de inversión
en equipamiento de red. Esto es posible gracias a las diferencias tecnológicas existente
entre los diferentes sistemas móviles, que hacen que los sistemas de segunda
generación sean adecuados para proporcionar el servicio de voz y mensajería corta,
mientras que redes de tercera generación muestran un mejor rendimiento en la transmisión
de servicios de datos. Por último, el servicio de banda ancha móvil es nativo
de redes de última generadón, como High Speed Data Acces (HSPA) y 4G.
Ambos módulos han sido aplicados a un extenso conjunto de experimentos para el
desarrollo de análisis tecno-económicos tales como el estudio del rendimiento de las
tecnologías de HSPA y 4G para la prestación del servicio de banda ancha móvil, así
como el análisis de escenarios reales de despliegue para redes 4G que tendrán lugar a
partir del próximo año coinicidiendo con la licitación de las frecuencias en la banda
de 800 MHz. Así mismo, se ha llevado a cabo un estudio sobre el despliegue de redes
de 4G en las bandas de 800 MHz, 1800 MHz y 2600 MHz, comparando los costes
de inversión obtenidos tras la optimización. En todos los casos se ha demostrado
la mejora, en términos de costes de inversión, obtenida tras la aplicación de ambos
módulos, posibilitando una reducción en la determinación de los costes de provisión
de servicios.
Los estudios realizados en esta tesis se centran en la nación de España, sin embargo
todos los algoritmos implementados son aplicables a cualquier otro país europeo,
prueba de ello es que los algoritmos de diseño de red han sido utilizados en diversos
proyectos de regulación
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