259 research outputs found

    Technology Forecasting for Wireless Communication

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    Wireless communications technologies have undergone rapid changes over the last 30 years from analog approaches to digital-based systems. These technologies have improved on many fronts including bandwidth, range, and power requirements. Development of new telecommunications technologies is critical. It requires many years of efforts. In order to be competitive, it is critical to establish a roadmap of future technologies. This paper presents a framework to characterize, assess and forecast the wireless communication technologies. A DEA-based methodology was used for predicting the state-of-the-art in future wireless communications technologies

    The Direction of mobile evolution examined through the NTT DoCoMo strategy, Mobile Frontier

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    NTT DoCoMo is Japan\u27s biggest mobile service provider. They added extra value into cellular phone as telephone , and contributed to the explosive spread of the mobile phone in Japan. They have still led Japan as a country with the world\u27s largest mobile Internet. The mobile phone now changes our lifestyles or work styles, and has a great influence also on business. In 1997, NTT DoCoMo created the company vision towards the year 2010, Mobile Frontier . It consists of five concepts, named MAGIC , and indicates the mobile phone figure in the future as a whole. I regard it as a guideline of this paper, and examine the direction of mobile evolution by researching the following topics: the present situation, the issues needed to realize each concept, and the future. At first, I state the background of the mobile phone spread in Japan and the cultural aspects peculiar to Japan. After that, I examine the mobile evolution along with the five concepts. The objective of this paper is to refer to and understand the vision of a leading company in the telecommunication field, and consider mobile communications\u27 influence and applications in the future. The goal is to expand knowledge in the present situation of the mobile phone and the trend towards future mobile, and to examine the direction the Mobile Frontier aims

    Realizing mobile multimedia systems over emerging fourth-generation wireless technologies

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    Thesis (M.Eng.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2001.Includes bibliographical references (p. [161]-167) and index.by Pei-Jeng Kuo.M.Eng

    Communication Standards Adoption in Developing Economies: Issues and Options for India

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    Given the importance of communications in todays world, its spread in developing economies is critical for their development. Emergence of standards reduces market and technological uncertainty and lays the foundation for market creation and enhances the diffusion of communication technologies partly through the advantages associated with network and scale economies. Standardisation has also become important with the rise in cross-fertilisation between information technology (IT) and other technologies, especially in communications. Under these circumstances, strategic implications of IT standardisation are huge because standards can determine the growth potential of individual firms, affect the competitive advantage of nations and even development of technologies and their diffusion. Policies for standards adoption have been used world-wide to facilitate the diffusion of communications technologies, acquire a larger market share of the global telecom market, build technological capabilities. The paper reviews various approaches to communications standard adoption as well as the experiences of other countries. These approaches and experiences and the associated market and regulatory failures are evaluated in the context of the current Indian situation. This evaluation suggests that a standards neutral policy is desirable for India.

    A General Framework for Analyzing, Characterizing, and Implementing Spectrally Modulated, Spectrally Encoded Signals

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    Fourth generation (4G) communications will support many capabilities while providing universal, high speed access. One potential enabler for these capabilities is software defined radio (SDR). When controlled by cognitive radio (CR) principles, the required waveform diversity is achieved via a synergistic union called CR-based SDR. Research is rapidly progressing in SDR hardware and software venues, but current CR-based SDR research lacks the theoretical foundation and analytic framework to permit efficient implementation. This limitation is addressed here by introducing a general framework for analyzing, characterizing, and implementing spectrally modulated, spectrally encoded (SMSE) signals within CR-based SDR architectures. Given orthogonal frequency division multiplexing (OFDM) is a 4G candidate signal, OFDM-based signals are collectively classified as SMSE since modulation and encoding are spectrally applied. The proposed framework provides analytic commonality and unification of SMSE signals. Applicability is first shown for candidate 4G signals, and resultant analytic expressions agree with published results. Implementability is then demonstrated in multiple coexistence scenarios via modeling and simulation to reinforce practical utility

    Software defined radio : a system engineering view of platform architecture and market diffusion

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    Thesis (S.M.)--Massachusetts Institute of Technology, System Design & Management Program, 2002.Includes bibliographical references (p. 179-181).As complexity and ambiguity in products and customer needs increase, existing companies are being forced toward new organizational models. New products require integrating knowledge across technologies, architectures, and functions in new ways, building product platforms that can adapt to changes in markets and product design throughout the product development process. In particular, the wireless telecommunications industry is plagued by multiple incompatible dominant second-generation standards, with each with separate migration paths to future third generation functionality. The high initial investments in spectrum and infrastructure, and corresponding switching costs, call out for a technological solution that can both evolve with the rapid advances in technology and potentially operates seamlessly across multiple incompatible networks to unify a highly fragmented system. In a system engineering context, this thesis investigates the use of software define radio technology (SDR) as a potential replacement for hardware solutions to the multiple air interface standard problem. This thesis investigates the role of product platform architectures in product market diffusion by studying the selection of appropriate system and product architectures, product market diffusion, and the formation of a system dominant design. Using software defined radio (SDR) technology in the wireless telecommunications industry as a case study, the emergence of SDR as a potential replacement for multiple mobile phone standards is investigated. Compared with interim compatibility solutions that combine multiple air interfaces through hardware. SDRs are an emerging technology that promises to combine multiple air-interfaces into a single wireless phone platform though software configuration. Market and organizational disruptions are determined, and how platform architecture concepts can be used to mitigate these disruptions. The history of the wireless telecommunications industry is presented to highlight the determinants of product and standards success in the wireless industry. The transition between first-generation (1G) wireless, second-generation (2G) wireless, and the interim high data rate second-generation (2.5 G) system currently being rolled out is discussed. Geographical differences in standards acceptance and the role of government policies are discussed. The strong network effects in the industry are illustrated by the late success of GSM technology in the United States market. The mode of technological standard interaction or competition is determined through the use of the Lotka-Volterra model of technological interaction and lessons learned applied to third generation systems. Plans for third generation (3G) wireless are presented, and the various transition paths from 2G to 3G are discussed. The challenges of transitioning between technologies (technological discontinuities) are highlighted through a discussion of the installed base of legacy equipment. Software defined radio (SDR) technology is presented, and a platform architecture is developed in the context of 3G market penetration. The use of appropriate flexible SDR system architectures in light of rapidly changing technological and market innovations is discussed.by Moise N. Solomon.S.M

    A framework for global business strategy planning for the wireless telecommunication carrier

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    Thesis (M.B.A.)--Massachusetts Institute of Technology, Sloan School of Management, 2007.Includes bibliographical references (leaf 96).Within 27 years from 1979 when the first analogue cellular telephone system was launched, the Wireless Telecommunication industry has evolved drastically. Its technology and service are now in third generation: 3G, and already moving forward to 4G. Within a few years, it will enable the exchange of multimedia contents with huge digital data over the air. In the global market, most countries have deregulation and encourage now free competition. Especially emerging market e.g. BRICS is rapidly growing and intensifying the global competition. Furthermore, it seems that the internet revolution forces the industry to change their traditional business model entirely. In this situation, wireless telecom carriers may not be able to survive if they fail to adapt to the new evolved environment. They need developing an appropriate global business strategy, taking into account all complex essential factors: integration with the internet, sustainable disruptive innovation, international technology standardization and market globalization. What framework and method can solve the problem?(cont.) This is the essential question for the industry. In order to answer the question, I believe that any player in the industry has to investigate these dynamics and interrelation each factor has, and design business strategy to achieve sustainable growth in the complex market. In the thesis, as one part of the solution, I propose (i) a hybrid analysis method how to investigate the industry and capture the complex dynamics, and (ii) strategy development procedure to support appropriate business strategy for future wireless communication business. In terms of (i), I introduce three analysis tools: my Triangle Pyramid Configuration Study (TPCS), Porter's Competitive Advantage Analysis and Lessard's RATs Test. Regarding to (ii), I clarify a scheme to integrate these analyses results obtained by (i) for the business strategy development. Finally, I conclude my research by describing essential issues for future wireless telephony business.by Tetsuya Yamashita.M.B.A
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