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Cloud Computing on CNBC – $100B market
Google’s Head In The Clouds Follow me at https://Twitter.com/Kevin_Jackson
IBM Blue Cloud
A short news interview on the IBM Blue Cloud . Follow me at https://Twitter.com/Kevin_Jackson
Amazon’s Cloud Overtakes Websites
May 27, 2008 See NY Times article, Cloud Computing: So You Don’t Have to Stand Still Follow me at https://Twitter.com/Kevin_Jackson
May 1 IBM, Google Partnership Announcement
In this video, IBM and Google announce their joint cloud computing initiative. As I said in my earlier post, Google and IBM have teamed up to provide a “Google-like” infrastructure.…
“The Missing Piece in Cloud Computing”
First Software as a Service – SaaS…Then Hardware as a Service – HaaS…Now, Middleware as a Service – MaaS? GigaSpaces’ CMO Geva Perry will be presenting on middleware virtualization at…
How the NRO can leverage Cloud Computing
Last Thursday, May 22nd, I had the pleasure of attending an Intelligence Community Executive Forum hosted by Carahsoft. The topic of this forum was “”Innovative Technology for the Intelligence Enterprise”.…
Green Cloud Computing
The other day I was asked “Why is cloud computing considered green?” Wouldn’t you know, The Economist provided the perfect answer. “In future the geography of the cloud is likely…
Oracle in the Cloud
Oracle (NSDQ: ORCL) is building new data centers to support cloud computing. The company is investing $285M and will break ground on the 200,000-square-foot facility this summer. Oracle’s president Safra…
Cloud Computing supports Net-Centric Warfare
Netcentric warfare theory contains the following four tenets in its hypotheses: 1) A robustly networked force improves information sharing;2) Information sharing enhances the quality of information and shared situational awareness;3)…
The Achilles heel of every transformative business model is their reliance on ever increasing amounts of data that need to be transported quickly across wide area networks and processed at edge computing end points. To meet this expected demand, the global telecommunications industry is rapidly moving toward a future in which networks must have the agility, flexibility, and scalability to deliver aggregated capabilities through fully programmable networks.
Since the late 1970s, new generations of technology and wireless standards have been introduced every decade through the current transition between 4G and 5G capabilities. Limited data capability was provided using circuit-switching under the European Telecommunications Standards Institute (ETSI) Global System for Mobile Communications (GSM) standard. Improved data rates were brought to the market in the late 1990s by using 2.5G and 2.75G technology, which were named GPRS (general packet radio service) and EDGE (enhanced data rates for GSM Evolution). The introduction of the LTE network later set the standard for high-speed wireless communications on mobile devices and data terminals.
Historically, sovereign nations have managed their telecommunications networks as national assets.
The political negotiations that drove that history led to underlying technological choices and today’s
heated international competition around 5G network deployments. In fact, western nations fear that China’s Huawei Technologies’ dominance of 5G technology could give the Chinese government backdoor access to Western mobile networks and the application. This international competition will determine the availability of specific technologies and telecommunications resources in each geographic region.
For 5G networks, data transfer speed, volume, and latency depend on the spectrum bands used and the network usage context (fixed or mobile). MmWave spectrum is a high-frequency technology that lies between 30 GHz and 300 GHz. It is attractive because its shorter wavelengths create narrower beams, which provides better resolution and security for data transmission. A 5G mmWave system requires a significant infrastructure build but could reap the benefits of data transferred at up to twenty times the speed of current 4G LTE networks. MIMO (multiple-input and multiple-output) increases throughput by using high-quality signals to receive multiple data streams at a reduced power per stream. Massive MIMO can multiply the capacity of a wireless connection without requiring more spectrum, which could potentially deliver a fifty-fold increase in the future.
These network capabilities are substantially superior to previous wireless technology generations and have subsequently set off the rapid development of many new application requirements and functions. With this new infrastructure, application components are placed in an optimal location to use compute and data storage services of the distributed cloud. The distributed cloud approach increases capacity, availability, and coverage while also limiting data transfer requirements. A distributed cloud solution enables edge computing by using micro and small data centers. Application developers must learn how to exploit these new design requirements to deliver ever increasing value to their end users.
Learn more about digital transformation innovation: pick up a copy of my new book, Click to Transform!Â
Cloud Computing
- CPUcoin Expands CPU/GPU Power Sharing with Cudo Ventures Enterprise Network Partnership
- CPUcoin Expands CPU/GPU Power Sharing with Cudo Ventures Enterprise Network Partnership
- Route1 Announces Q2 2019 Financial Results
- CPUcoin Expands CPU/GPU Power Sharing with Cudo Ventures Enterprise Network Partnership
- ChannelAdvisor to Present at the D.A. Davidson 18th Annual Technology Conference
Cybersecurity
- Route1 Announces Q2 2019 Financial Results
- FIRST US BANCSHARES, INC. DECLARES CASH DIVIDEND
- Business Continuity Management Planning Solution Market is Expected to Grow ~ US$ 1.6 Bn by the end of 2029 - PMR
- Atos delivers Quantum-Learning-as-a-Service to Xofia to enable artificial intelligence solutions
- New Ares IoT Botnet discovered on Android OS based Set-Top Boxes