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Virtual Machines in Virtual Networks
One of the key value propositions in cloud computing is built around increase efficiencies. These eficiencies are diven by the use of virtual machines (VMware, XEN, etc.) and the automated…
SOA-R Interest Grows
Interest continue to grow in the use of cloud computing concepts for national security missions. Although some view the idea of a “private cloud” as an oxymoron, I personally see…
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CC Tidbits
Interesting tidbits from Maureen O’Gara in Apple, Google, Yahoo & Cloud Computing: Industry gadfly John Dvorak is advancing a theory culled from the blogosphere that Microsoft wants Yahoo for some…
Correlative Analytics: Cloud Computing Google Mindshare
Correlative Analytics (A.K.A. “The Google Way of Science“) postulates that extremely large databases of information, starting in the petabyte level, may be sufficient to skip the theory part of the…
What is Cloud Computing? — Another view
Irving Wladasky-Berger, chairman emeritus of IBM’s Academy of Technology, recently wrote and article on cloud computing titled “What is Cloud Computing, Anyway?”. The following is my interpretation of a few…
Dark Cloud Computing
In his blog article “The Rise of The Dark Cloud” Reuven Cohen wonders about a growing interest in covert computing. Although he briefly mentions malevolent uses of the net, the…
July Military Information Technology magazine
This month’s issue of Military Information Technology magazine has the Army’s Chief Information Officer, Lieutenant General Jeffrey A. Sorenson, on the cover. The enclosed special report, titled LANDWARNET Transformation, has…
“The Big Switch” and Intellipedia Highlighted
During last week’s SOA-R session, Steven Armentrout referenced “The Big Switch” by Nicholas Carr as a very enlightened view of our changing world. On July 17th, Information Week’s Richard Martin…
Does anybody really know what cloud computing is?
Less than 2% of the CIOs in an Infoworld survey said that cloud computing was a priority. The surveyed indicated that server virtualization and server consolidation are their No. 1…
Communications Service Providers (CSPs) are facing significant business model challenges. Referred to generally as edge computing, the possibilities introduced by the blending of 5G networks and distributed cloud computing technologies are redefining how CSPs operate, partner, and drive revenue. A new Ericsson Digital whitepaper entitled, “Edge computing and deployment strategies for communication service providers,†addresses these challenges by providing much-needed insight and actionable strategic recommendations.
Written by Ericsson Director Cloud Strategy Execution Carlos Bravo and Solution Marketing Manager Henrik Bäckström, this new work presents a practical roadmap for how the industry should address the expected US$700 billion in 5G-enabled, business-to-business value. It directly answers the question of how operators can maintain relevance in the face of the current massive industry changes. The most enlightening aspect of the paper was the architectural approach to the design and deployment of advanced edge computing solutions. The four critical components of this approach are:
- Dynamic orchestration and management;
- Application runtime execution environment;
- Connectivity; and
- Distributed cloud infrastructure.
Dynamic orchestration and management emphasize a centralized function that maintains awareness of the network topology and resource availability. This capability maintains consistency between user plane gateway functionality and edge applications.  Consistency is critical to the management of non-telco workloads and VNFs. The application runtime execution environment (RTE) is responsible for hosting all enterprise customer applications in a consistent and well-documented edge computing service environment. Documentation is essential to the development and nurturing of the CSP’s application developer community. Connectivity delivers foundational bandwidth, throughput, mobility, and latency requirements. For edge computing, the application developer may specify these requirements. New traffic routing services that coordinate application server requirements and network functionality are also required. In combination, these capabilities enable the Distributed Cloud Infrastructure, which is composed of global, national, regional, and local cloud data centers. The integration of these data centers with the network is also critical.
Success with this model requires an overall strategy that differentiates on services delivered. This strategy differs from the more common “services description†approach by its ability to solve industry-specific challenges through the provisioning of easy-to-consume application programming interfaces, or APIs. This “broad tent†approach also requires open collaboration with system integrators, hyperscale cloud service providers, and operations technology vendors. System Integrators (SI) are particularly suited to the task of addressing enterprise pain points related to edge computing solution implementation and the integration of vertical industry offerings. Hyperscale Cloud Providers (HCP) deliver cloud infrastructure and platforms. They also bring with them the application developer ecosystems. Operations Technology (OT) vendors have the Internet of Things (IoT) platforms and applications that deliver the real value at the network edge. Since differentiated services must also be easily accessible to application developers, operators should offer APIs that follow industry de-facto standards or adopt APIs that present a common list of attributes.
This business model approach redefines the telecommunications value chain. It features operators as the provider of new enterprise-focused offerings. The models also enable many and varied use cases across multiple industry verticals. Operators can also differentiate locally while simultaneously leveraging a global edge computing ecosystem.
Following this recommended path leads typically to service provider focus on one, or a combination, of the following high-level strategies:
- Full Edge Provider – CSP advances a strong go-to-market (GTM) relationship with the enterprise or the application developer/provider, committing to vertical-specific SLAs
- Partner Edge Provider – CSP resells HCP and OT vendor industry vertical solutions delivered over the provider’s connectivity services. The focus is on use cases that depend on robust connectivity.
- Aggregator Edge Provider – CSP partners with a content aggregator through a revenue share aaS model. The aggregator commits to SLAs while the CSP provides edge hardware.
- Limited Edge Provider – CSP focusses on connectivity that supports vertical industry solutions offered by partner HCP, SI and OT vendors
Edge Computing is drastically changing the service provider role. Success will depend on pursuing a collaborative partner strategy that highlights your telco company’s strengths. All of the recommended strategies, however, demand an understanding and focus on enterprise vertical challenges and solutions.
Ericsson Digital Services offer solutions to modernize, digitalize, and shape new business models for Telco operators globally. Our advanced offerings are designed to help you secure, serve, and grow your business and customer base through innovative customer engagement platforms, automated operations, and programmable networks. If you know what your customers are doing, you will know what to do for your customers. Let us help you leverage edge computing to transform your business so you can evolve, scale and thrive in the digital era. Please visit https://www.ericsson.com/en/digital-services/trending/edge-computing.
Disclaimer: This article was sponsored by Ericsson as part of the Ericsson Ambassador Program.
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