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A framework for evaluating proposed technologies for next-generation wireless systems

William Jones
TLDR
A framework for evaluating proposed technologies for next-generation wireless systems, using systems modelling approaches, mixes hard systems modelling into a soft approach providing a method for managing complexity and facilitating learning points for the development of future wireless systems.
Abstract
This thesis presents a framework for evaluating proposed technologies for next-generation wireless systems, using systems modelling approaches. First, the socio-economic system is explored addressing the challenging question of how to develop a strategy for research investment in the complex development space of Fifth Generation (5G) era technologies. By the application of Problem Structuring Methods, and focusing on developing a clearer understanding of the industry landscape, a methodology for strategic decision making is proposed. The approach is used to identify key areas of wireless technology research for the 5G era. Subsequently, identified key areas of wireless technology including, full-duplex, beamforming, clear channel assessment and transmission power adaptation are explored in single and multi-hop wireless networks. A novel conceptual simulation modelling methodology is proposed and applied to investigate the performance impact of these technologies when implemented in the context of Carrier Sense Multiple Access with Collision Avoidance wireless networks. The methodology is designed to aid researchers in the environment of a corporate research and development lab with the goal of developing innovations and intellectual property that can bring commercial success. Whilst each technology is capable in principle of improving system performance, often the gain is limited when implementing in a network environment. The methodology is used to propose strategies for maximising performance gain with quantitative results to support the conclusions. The framework mixes hard systems modelling into a soft approach providing a method for managing complexity and facilitating learning points for the development of future wireless systems.

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Citations
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Insensitivity and stability of random-access networks

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References
More filters
Journal ArticleDOI

Confirmation Bias: A Ubiquitous Phenomenon in Many Guises:

TL;DR: Confirmation bias, as the term is typically used in the psychological literature, connotes the seeking or interpreting of evidence in ways that are partial to existing beliefs, expectations, or a h...
Journal ArticleDOI

Beamforming: a versatile approach to spatial filtering

TL;DR: An overview of beamforming from a signal-processing perspective is provided, with an emphasis on recent research.
Journal ArticleDOI

The architecture of complex weighted networks

TL;DR: This work studies the scientific collaboration network and the world-wide air-transportation network, which are representative examples of social and large infrastructure systems, respectively, and defines appropriate metrics combining weighted and topological observables that enable it to characterize the complex statistical properties and heterogeneity of the actual strength of edges and vertices.
Book

Mastering the Dynamics of Innovation

TL;DR: The dymanics of onnovation in industry dominant designs and the survival of firms product innovation as a creative force innovation and industrial evolution innovation in non-assembled products invasion of a stable business by radical innovation are discussed in this paper.
Journal ArticleDOI

Stability properties of constrained queueing systems and scheduling policies for maximum throughput in multihop radio networks

TL;DR: The stability of a queueing network with interdependent servers is considered and a policy is obtained which is optimal in the sense that its Stability Region is a superset of the stability region of every other scheduling policy, and this stability region is characterized.