Friday, September 22, 2017

Backup Disaster Recovery Solutions for Smart Cities


Roughly 2.3 billion connected devices exist in smart cities like Tokyo, London, and New York, a whopping 42 percent increase from last year. Therefore, disaster recovery solutions are critical. For bolstering economic growth and enhancing the quality of life, companies must have a viable IT disaster recovery plan in place.

The Internet of Things (IoT) reduces energy consumption for things like water flow regulation and street light operation. However, top disaster recovery service providers predict this footprint will exceed 50 billion connected devices by 2020, creating a tremendous challenge. It is imperative that smart cities have an IT disaster recovery plan as protection against natural and man-made incidents that would make it difficult to use accurate data required to function optimally.

In addition to the risk of being on grids for outages, smart cities get targeted for cyber-attacks. To prevent multiple city services from shutting down from a single-entry point, an all-too-real possibility that would threaten the safety and health of the public, Cloud disaster recovery becomes vital.

Along with 162,000 square feet of colocation space at a dedicated Continuity Recovery site, Telehouse New York Teleport boasts ample offices to accommodate personnel should an adverse event occur.

Friday, September 1, 2017

ALGORITHMS: SCARY SMART AND SOMETIMES JUST PLAIN SCARY

Algorithms, complex mathematical equations designed to solve problems or perform a task, automate much of the technology that makes smart cities smart, from intelligent public transportation and traffic management to smart electrical grids and water usage. Algorithms are also a fundamental tool in transforming Big Data, first into useful analytics, and eventually into action. More on that later.


Data centers and colocation facilities, the pillars of smart cities, are replete with examples of the use of algorithms. Data Center Infrastructure Management (DCIM) tools predict cooling issues based on algorithms built from temperature pattern models. There are load balancing algorithms, which play an important role in distributing network or application traffic across servers, thereby dynamically improving the efficiency of computing resources. And there are smart storage algorithms, which process requests for video and other rich media, and hold the promise of reducing energy use for enterprise-level storage area networks by 20 to 50 percent.

The world’s first and eponymously-titled Euclidean algorithm came to us in 300 B.C. and is still used by computers today. In fact, without algorithms, there would be no computer operating systems, no World Wide Web, and no Google with which to Google “algorithms,” much less the name of that actress who starred in that movie with that guy.

Okay, so now we have your attention.

Getting Too Personal

Today, algorithms are increasingly affecting our personal and professional lives in ways that we can’t imagine or might even find unsettling. Consider the algorithm created by the analytics team at the U.S. retailer Target, which could calculate whether a woman is pregnant and even when she is due to give birth.

In a nutshell, Target, like every retailer, stores a history of every item their customers have bought and any demographic information the company has collected from them. Target analyzed this information against historical buying data for all the women who had ever signed up for its baby registries. The analytics team then created an algorithm that identified 25 products — from unscented lotion to supplements such as calcium and zinc to oversized purses large enough to double as a diaper bag — which, when collectively analyzed, assigned each shopper a “pregnancy prediction” score. More importantly, for direct marketing purposes, its algorithm also estimated a woman’s due date, so that Target could send coupons to customers’ homes timed to specific stages of pregnancy.

And what could be the harm in that? Pregnancy, birth, an impending bundle of joy? Well, some women, families, and especially, teenagers, preferred that their pregnancies remained private. But Target’s predictive algorithm-based marketing hadn’t factored that very human element into their campaign, and trouble ensued.

Every Digital Breath You Take

And then of course there is the U.S. National Security Agency’s XKeyscore program, which was one of the covert projects revealed by Edward Snowden. You may never have heard of XKeyscore, but it definitely has heard of you.

XKeyscore collects every digital breath you’ve ever taken on the Internet, including browsing history, Google searches, the content of your emails and online chats, and at the tap of the keyboard, can process that data through an algorithm to identify potentially subversive activity. The NSA’s own training materials identified XKeyscore as its “widest reaching” system for developing intelligence from the Internet.  Click here to visit original source....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Thursday, August 31, 2017

FRAILTY, THY NAME IS DATA! – MASTERING DISASTER RECOVERY


Mastering Disaster

From a busted pipe to a fire, your data is vulnerable during a disaster. This is a serious problem, considering that half of businesses that lose data for 10 days or more end up filing for bankruptcy within 6 months. You can avoid this issue by having a data center disaster recovery plan in place. The right disaster recovery strategy will safeguard your data and get you back up and running quickly.

Run Mock Drills

Your data center disaster recovery strategy must include drills. Mock drills prepare your team for a disaster so they can handle the stress during the real thing. This prevents people from panicking, ensuring that they respond effectively. The more drills you run, the better off you will be. Practice turns into habit, so you can build effective habits with mock drills.

Use Advanced Planning and a Clear Chain of Communication

Advanced planning and communication are also essential for your data center recovery. Start with a clear chain of communication so people know exactly who to communicate with during a disaster. You should run mock drills so everyone can practice communicating. In addition, update the chain when staff changes or new technology emerges.

In regards to planning, you must consider what could potentially fail during a disaster and keep spare parts on hand to fix the problem before it occurs. If an emergency occurs, your vendors won’t be able to rush out to you, so having those parts available is essential to getting up and running. In addition, keep up with your maintenance schedule to reduce the chance of failure during a disaster.  Click here to visit original source....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Monday, August 28, 2017

WREAKING HAVOC: DDOS ATTACKS ARE GROWING MORE FREQUENT, SOPHISTICATED AND COSTLY

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Distributed Denial-of-Service (DDoS) attacks, which do not discriminate, have been used to target financial services, healthcare, technology, media and entertainment, software, gaming and a host of other industry sectors. According to Neustar’s Worldwide DDoS Attacks and Protection Report, 73 percent of organizations have suffered a DDoS attack, and 85 percent of attacked businesses have been victims of multiple assaults. Almost half of all DDoS targets run the risk of losing more than $100,000 per hour, with one-third exposed to potential losses of more than $250,000 per hour.

How do those numbers add up over the duration of an attack? According to research by the Ponemon Institute, the average cost of a DDoS attack last year was $4.7 million. Moreover, greater than half of all targets have also suffered a cybersecurity breach while undergoing a DDoS attack.


While the number and severity of DDoS attacks has risen every year, this past year has seen the rise of mega attacks targeting major sites. Twelve attacks have been recorded achieving greater than 100 Gbps throughput, of which five exceeded 200 Gbps.

The most notorious and largest of recent attacks were executed by the Mirai botnet, a collection of more than 100,000 compromised Internet-connected video cameras, consumer routers and other devices that occurred in the fall of 2016. Mirai’s victims included the Republic of Liberia’s Internet infrastructure, as well as U.S. DNS service provider Dyn, which resulted in the inaccessibility of several high-profile websites such as Netflix, Spotify and Airbnb. When one can’t binge-watch their favorite show, listen to R&B classica, or book an affordable room in Paris or Barcelona, something has to change. More on that later.

Cybercriminals have many DDoS-enabled weapons in their quiver. While the Mirai attack directly targeted Dyn’s DNS service, DNS services can also be interrupted by a method known as spoofing, or cache poisoning, whereby corrupt DNS data is used to divert Internet traffic away from the correct server. In fact, one in five DDoS attacks last year were DNS-based.

DNS servers can also be used to generate DDoS traffic with DNS amplification. The cybercriminal sends a DNS query with a forged IP address. The DNS server responds to the forged IP address belonging to the target of the attack. The result is that small queries trigger large responses that can overwhelm the target of the attack.

So, how do companies solve the challenge of quickly detecting and mitigating the pernicious threat of DDoS attacks?  Continue reading....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Monday, July 24, 2017

NYSCIO 2017: KEY TAKEAWAYS FROM NYSERNET’S 16TH ANNUAL EVENT

NYSERNet’s NYSCIO 2017 conference explores IT trends within higher education institutions


As discussed in our recent blog, The Impact of Technology on Higher Education, technological innovation is making an enormous impact on the higher education system as an increasing number of institutions utilize IoT, Big Data analytics, OTT streaming technologies and advanced online learning platforms to provide students, faculty and administration with an abundance of new opportunities to enhance educational experiences.




Last week, NYSERNet’s 16th annual New York State Chief Information Officer (NYSCIO) conference took place at the Harbor Hotel in Clayton, New York, a region better known as the 1000 Islands. This event brings together Chief Information Officers (CIOs) and senior IT leaders from across New York State’s higher education community, providing a platform for networking, education and business development. I had the pleasure of attending the three-day conference to not only share information about the Telehouse data center services and solutions that benefit the higher education community, but to gain a deeper understanding of the various challenges and obstacles faced by academia’s leaders and decision-makers.

While in attendance, I had the opportunity to hear about the higher education’s most pressing topics, including IT compliance issues, digital transformation, Big Data analytics and integration of IT and academics. During the event, I was also introduced to the findings of the recent Fall 2016 Campus Computing Survey during a session led by Campus Computing Project Founding Director, Casey Green, who explored the various IT priorities of New York universities and colleges.

The results of the 2016 National Survey of eLearning and Information Technology in U.S. Higher Education indicated that there are five major priorities for today’s campus administrators, including hiring and retaining qualified IT staff; assisting faculty with the instructional integration of IT; upgrading and enhancing network and data security; providing adequate user support services; and leveraging IT resources to support student success. In fact, each one of these concerns was ranked a top priority by more than 75 percent of survey responders. To read more click here....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

Friday, July 21, 2017

GLOBAL SPOTLIGHT: INTERNET AND DATA CENTER GROWTH IN RUSSIA

Multinationals Seeking a Commercial Presence in Russia Push the Market Forward



With nearly 74 million users, Russia is Europe’s largest internet market. Given that figure, the metrics surrounding Russia’s data center industry are somewhat ambiguous. Consider that the country’s commercial data center market reached a modest $303 million in 2014, but has been growing at approximately 25 percent per year over the last five years, according to Direct INFO, a research consultancy.

In fact, as recently as eight years ago there were only half a dozen Tier I to Tier II commercial data centers in the entire country and these were largely operated by systems integrators. At the time, Russia’s technology talent pool lacked the necessary skillsets to build and operate modern data centers.

Today, however, Russia has no fewer than 180 data centers, most which are in Moscow. Sixteen of the 20 largest data centers in the country operate in the capital, each of which contains more than 1,000 racks and an average total capacity of 12 MW. Over the next several years, that number is anticipated to grow due to a confluence of factors, and not just in Moscow.

Government Regulations and Global Business Drive Growth

The data center colocation market, in particular, is being stimulated by government legislation, passed in September 2015, which forbid the storage of Russian citizens’ personal data on servers located abroad. Multinational and Russian financial institutions, as well as insurance and investment companies, are also facing new, more stringent regulations on international activity, which will increase the demand for premium data center services.

The other main drivers of the Russian colocation sector include a steady rise in demand for new white space, a growing interest among Russian enterprises in outsourced data center strategies, and an increasing number of international service providers and enterprises looking to establish a commercial presence in Russia.

With the development of enterprise branch networks, it also becomes desirable for companies to centralize the processing and storage of data using complex business applications, for example, ERP-and CRM-systems. Hence, commercial data centers will increasingly be used to centralize the IT infrastructures of global companies. Moreover, the use of commercial data centers will allow multinational firms to ensure the continuity of their business due to their high reliability.

On the Edge and in the Cloud

The owners of large-scale web projects, including search engines, web portals and social networks that generate a significant amount of traffic and number of users, also seek to locate their equipment closer to the end-user, or on the edge of the network, to reduce the costs of data transfer. These web-scale players are specifically interested in regional data centers. Visit original source....

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com

THE “NEW” NEW YORK

How New York Is Evolving Into a World-Class Smart City


Simon Sylvester-Chaudhuri is a Managing Partner at Global Fortunes Group, spearheading various products and programs that drive urban innovation. As an advocate for technological innovation around the world, Simon is passionate about smart city development on a global scale and has worked with multiple world-class cities throughout Europe and the Middle East. We recently had the opportunity to interview Simon to discuss the current state of New York as a smart city as well as the policies that are driving the technological advancements that will define the “new” New York.

Coming to America

While the concept of smart cities has been in practice throughout Europe for nearly a decade, this trend has only taken hold in the United States over the past two to three years across a limited number of major metro areas, including New York, Chicago, Atlanta and San Francisco. In New York, the conversion into a technologically advanced smart city is predominantly driven by government programs and citizen engagement.

“One of the key drivers of innovation that I’ve experienced in New York is the willingness of policy-makers, privately-held enterprises and general citizens to work together to create a smarter and more advanced city,” shared Simon. “We’re not only focusing on the technology aspect, but also creating new ways to engage citizens and organizations with innovation labs and government programs. These provide an element of inclusiveness that is unique to New York, enabling intelligent discussion and action.”

As a testament to that commitment, the Mayor’s Office of Technology and Innovation (MOTI) has laid the groundwork for continued innovation by providing the necessary resources for a variety of projects, including the conversion of the historic Brooklyn Navy Yard into a model of modern, urban technological development. This industrial park also serves as home to the New Lab, one of the world’s leading technology hubs.

“In the push toward technological innovation, major universities such as Cornell, Columbia, NYU and CUNY are also getting involved in a big way,” Simon added. “Universities throughout this region are driving multiple initiatives to collect data that will help develop programs for enhanced urban and scientific progress as well as sustainability. One such program is the Urban Future Lab at the NYU Tandon School of Engineering, which hosts several programs focused on education, policy and market solutions to solve the challenge of sustainability in smart cities.”  Click here to visit original source

Contact Details:
Telehouse America
7 Teleport Drive,
Staten Island,
New York, USA 10311
Phone No: 718–355–2500
Email: gregory.grant@telehouse.com