Transformation Network

NJVC to Spotlight Cloudcuity at Gartner Data Center Conference

By G C Network | November 15, 2012

Las Vegas., Nov. 15, 2012 — NJVC, an information technology solutions provider headquartered in Northern Virginia, announces it will spotlight its Cloudcuity™ framework for delivering secure and unified cloud management…

NJVC Cloud Expert Kevin L. Jackson Launches Second Book: GovCloud II: Implementation and Cloud Brokerage Services

By G C Network | November 9, 2012

VIENNA, Va., Nov. 8, 2012—NJVC, an information technology (IT) solutions provider headquartered in northern Virginia, is pleased to announce that Kevin L. Jackson, vice president and general manager, cloud services,…

Virtustream a Visionary in Gartner 2012 IaaS Magic Quadrant

By G C Network | October 27, 2012

Congratulations to NJVC Cloudcuity partner Virtustream for being positioned as a visionary in the Gartner 2012 IaaS Magic Quadrant! Magic Quadrants provide a graphical competitive positioning of four types of…

GovCloud II: Implementation and Cloud Brokerage Services Now Available

By G C Network | October 22, 2012

I’m happy and proud to announce the release of my second book, “GovCloud II: Implementation and Cloud Brokerage Services” by my publisher Government Training Inc.   The public and private…

NJVC® Introduces Cloudcuity™ AppDeployer to Create and Sell Software Applications

By G C Network | October 18, 2012

Developers Can Create, Deploy and Publish Apps in the Cloud for Free Vienna, Va., Oct. 18, 2012 — NJVC®, an information technology (IT) solutions provider headquartered in Northern Virginia, introduces…

NJVC® Announces the Cloudcuity™ Government Marketplace, Powered by Virtustream’s Secure Cloud xChange

By G C Network | October 4, 2012

Vienna, Va., Oct. 4, 2012—NJVC®, an information technology solutions provider headquartered in Northern Virginia, and Virtustream, Inc., a leading enterprise cloud software company, today announced a new alliance to provide…

Cloudcuity™: Thought Leadership Translated to Operational Excellence

By G C Network | September 26, 2012

As my long time readers have certainly noticed, the frequency of my posts have lengthened over the past few months. First, I would like to offer my apologies for being…

NJVC® Unveils Cloudcuity™ Umbrella Framework for NJVC Cloud Services

By G C Network | September 13, 2012

Vienna, Va., Sept. 13, 2012 — NJVC®, an information technology (IT) solutions provider headquartered in Northern Virginia, introduces Cloudcuity™, a new framework for the company’s cloud service offerings to help…

NJVC® Announces SaaS Accelerate: Specialized Infrastructure Hosting and Managed Services Program for Software-as-a-Service Providers

By G C Network | August 25, 2012

VIENNA, Va., Aug. 15, 2012 —NJVC® announces the release of NJVC SaaS Accelerate, a specialized infrastructure hosting and managed services offering designed to support the business needs of software-as-a-service (SaaS)…

Texas Cloud Computing Lessons Learned

By G C Network | August 12, 2012

Late last week  the Texas Department of Information Resources (DIR) released an important whitepaper that reviewed it’s multi-year Pilot Texas Cloud Offering (PTCO). This project was designed to allow a…

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! 

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