Mobilitie brings interim Wi-Fi to L.A. Coliseum

The Los Angeles Coliseum is home to the NFL’s Rams and the University of Southern California. Credit all photos: Terry Sweeney, MSR (click on any photo for a larger image)

Previously reliant solely on DAS coverage, the Los Angeles Coliseum added Wi-Fi coverage last November in the student section – about 7,500 seats on the bowl’s east side – thanks to a donation of equipment and labor by Mobilitie.

The wireless services provider is also in the process of adding Wi-Fi to two sets of club suites — behind the southern end-zone and on the deck of the Coliseum’s iconic peristyle. These are used by fans of the Los Angeles Rams, the recently relocated NFL franchise playing its second season in the City of Angels. The Rams’ new $2.6 billion stadium is under construction in nearby Inglewood, projected to be done in 2019 and ready for the 2020 NFL season.

In addition to the Rams, the Coliseum is also home field for the University of Southern California’s football team. It’s also slated to be the stadium for the 2028 Summer Olympics, playing host to the world’s athletes for an unprecedented third time.

More renovations coming soon

Editor’s note: This profile is an excerpt from our latest STADIUM TECH REPORT, our Fall 2017 issue that has in-depth profiles of network deployments at Notre Dame Stadium, Colorado State’s new stadium, and the Atlanta Falcons’ new Mercedes-Benz Stadium. DOWNLOAD YOUR FREE COPY of the report today!

Mobilitie’s generosity notwithstanding, all the fan-facing Wi-Fi at the Coliseum is temporary, according to Derek Thatcher, an IT manager for USC, which manages the Coliseum on behalf of the County of Los Angeles. Demolition at the stadium will get underway in January 2018; while much of the bowl’s structure will remain, permanent club suites will be added as will new seating and new aisles with handrails. That will translate to a reduction in bowl capacity from 94,000 to 77,500, according to USC.

Close-up of the under-seat Wi-Fi APs

The $270 million refresh was already underway before LA’s eleventh-hour entry in the Olympics sweepstakes, activated after Boston voted down a bid. The U.S. Olympic Committee has earmarked $175 million for other upgrades at the Coliseum for the quadrennial gathering of the world’s athletes – and broadcasters.

A surprise part of LA’s Olympic bid was a proposal for simultaneous opening ceremonies at two venues, Thatcher explained. Under the USOC’s plan, the visual and logistical extravaganza could be split between the Coliseum and the gleaming new NFL stadium that the Rams will share with the Los Angeles Chargers (formerly of San Diego). Though the Games are more than 10 years away, it’s unclear how the use of two venues would work logistically. But the potential wow factor of such a spectacle is undeniable.

In the meantime, Thatcher, many of his USC counterparts and busloads of subcontractors will have their hands full once the current NFL season ends early next year. Fan-facing Wi-Fi is part of the plan for the Coliseum refresh; no word on which vendors are in the running or when the university will award the Wi-Fi contract.

Another look at the under-seat AP deployment

Gaining insight for the future

The USC Trojan faithful and Rams fans at the Coliseum had been reliant on DAS from AT&T, T-Mobile and Verizon Wireless. But Wi-Fi coverage is envisioned from the gates to the concourses and bowl. The Coliseum Wi-Fi will not extend to adjacent parking lots, which are owned by the State of California, not USC, Thatcher added.

And though the equipment and service contract hasn’t been awarded yet, Mobilitie made a smart move with the interim gear it donated – Wi-Fi access points all made by Aruba (now owned by HP Enterprise), the same Wi-Fi gear in use across the rest of USC’s campus. The donated network also gives Mobilitie insight to usage patterns, user habits and engineering challenges that are unique to the venue.

The Coliseum’s renovation is projected to be done by August 2019, though the facility will be useable for home games played by both USC and the Rams in the interim, according to Thatcher.

In the meantime, 166 Aruba APs will power fan-facing Wi-Fi at the Coliseum. Mobilitie installed under-seat APs; rather than drill new conduits or use saw-cuts through stadium concrete, the service provider used low-profile rubber matting to conceal the wiring. Many of the APs are also installed on angled concrete, which helps preserve storage space beneath the seats, a plus for fans and their sacks and packs.

Ready or not, Unlicensed LTE is here. What should your venue do?

The entry concourse at Atlanta’s new Mercedes-Benz Stadium. Credit all photos: Paul Kapustka, MSR (click on any photo for a larger image)

By Chuck Lukaszewski, Aruba Networks, a Hewlett Packard Enterprise company

There’s much excitement around the coming of “unlicensed LTE” and for good reason. In our anytime, anywhere world the last device many of us use at night, and the first one we pick up in the morning, is a mobile phone, tablet or computer. Although much of the time our devices connect via Wi-Fi, when we’re in transit we depend on cellular.

With consumers quick to express their disappointment when their apps fail to respond – or don’t respond fast enough – on a wireless network, cellular providers are keenly aware they must keep pace with rapidly escalating user experience expectations. Research suggests mobile data traffic will grow by 47 percent annually through 2021. Combine the two and the drivers for expanding network capacity are clear.

While the lure of more bandwidth can be attractive, stadium and venue operators need to carefully evaluate the technological impact and operational overhead unlicensed LTE introduces.

Gigabit cellular coming soon

Editor’s note: This post is part of Mobile Sports Report’s new Voices of the Industry feature, in which industry representatives submit articles, commentary or other information to share with the greater stadium technology marketplace. These are NOT paid advertisements, or infomercials. See our explanation of the feature to understand how it works.

To provide gigabit speeds, the cellular industry has enhanced LTE technology to bond multiple channels together, called “carrier aggregation.” Although originally designed only to combine different licensed frequencies, it has now been extended to aggregate licensed spectrum with 5 GHz unlicensed spectrum (where Wi-Fi operates). Two competing technologies for doing so have emerged, with notable differences when deploying in high-density environments like stadiums in the U.S.

LTE-U (LTE in the Unlicensed Spectrum) is a proprietary technology, developed by the LTE-U Forum, a consortium of several cellular-related companies. It enables simultaneous operation of LTE over both licensed and unlicensed spectrum by aggregating the bands together, resulting in a performance boost. However, the way LTE-U takes control of a channel – while legal in the U.S. – is controversial and may significantly degrade performance of Wi-Fi equipment using the same channel. The Wi-Fi and cellular industries worked together to produce a coexistence test plan, but so far none of the test results for LTE-U equipment authorized by the FCC have been made public.

LAA (Licensed Assisted Access) can be thought of as the standardized version of unlicensed LTE, designed to meet European “listen-before-talk” (LBT) requirements, so it can be deployed anywhere on the planet. It was developed through the 3rd Generation Partnership Project (3GPP) worldwide standards organization, with wide participation including input from the Wi-Fi community.

DAS gear above concession stand at Coors Field

Think of LBT like the telephone party lines of yesteryear, where multiple customers share a communal phone line but only one person can use it at a time for their conversation while others wait. When there is no conversation happening on the party line and two or more people try to speak at once, other customers of the party line graciously “back off” to allow one person to go first. In cellular terms, this makes LAA a more “polite” technology than LTE-U, as it waits to transmit until a channel is clear. The back-off method it uses is compatible with Wi-Fi at least on paper, although 3GPP does not require vendors to perform or publish any kind of test results.

The Road Ahead

Of course what you want to know is how the advent of LTE-U/LAA impacts your stadium and whether to add gigabit cellular to the connectivity mix.

As a robust, stable and mature technology, Wi-Fi’s strength and ability to handle exceptional stadium data traffic loads is well established. To make informed decisions about whether to consider LTE-U/LAA technologies alongside Wi-Fi, here are five essential technical considerations.

Spectrum Availability. The unlicensed radio spectrum is comprised of 24 channels in the U.S., which is analogous to a 24-lane freeway. Until now, only Wi-Fi traffic traveled on that roadway, with many years spent developing technologies to ensure steady traffic flow, particularly in stadiums. Wi-Fi includes its own LBT solution, which helps assure data merges smoothly onto the freeway. It’s been proven at six Super Bowls plus countless other concerts and sporting events.

Most stadium Wi-Fi networks are already spectrum-constrained, meaning they are just managing to carry the existing load – much less new fan technologies like AR/VR. A large body of evidence demonstrates that stadiums and arenas need 20-24 fulltime-equivalent channels to make a 5 GHz system work (regardless of technology). These Wi-Fi networks are carefully optimized to eliminate all unnecessary transmissions.

Adding one or more LTE-U or LAA systems will reduce available capacity for Wi-Fi operations. As of this writing, there are no public technical measurements of deployed systems so the actual impact is unknown. If four separate unlicensed LTE networks are actually deployed, the impact will be even greater.

Number of LTE-U/LAA Networks Required. Visitors to your stadium likely utilize each of the four U.S. cellular operators: AT&T, Sprint, T-Mobile and Verizon. Therefore, to offer gigabit cellular connectivity, you’ll need to permit all four to deploy an LTE-U, or LAA, network. Because the technologies are so new, they lack a “neutral host” methodology, so each operator will require its own separate physical network and spectrum.

DAS gear under seating area at SunTrust Park

Compatibility with Existing DAS. Most stadiums and arenas have either separate antenna systems for each major cellular operator or a converged neutral-host DAS. Although LTE-U and LAA are intended to support “dual connectivity” to a separate macro base station (or “eNodeB”) on paper, the products currently being shipped are intended as co-located small cells that contain two paired LTE radios – one licensed and one unlicensed. Stadium operators should validate whether their DAS systems are compatible with an expansive LTE-U/LAA small cell deployment where the primary cell (or “PCell”) is the DAS and each PCell has dozens of secondary cells (or “SCells”) providing 5 GHz service.

Cost vs. Benefit. Of no small consideration is the added amount of equipment, and the costs, in a hybrid Wi-Fi/cellular situation. If every cellular operator requires a separate LAA/LTE-U overlay, this implies up to four full new sets of equipment must be deployed under seats or on handrails. For a 60,000-seat stadium at typical under-seat densities, it would only require about 850 Wi-Fi access points (APs). In contrast, for LAA/LTE-U stadium operators would need over 3,000 additional small cells– with each one requiring a sturdy waterproof housing, a 30-watt POE connection, Cat-6 cabling, conduit and, of course, a hole drilled in the concrete. Meaning, LTE-U/LAA small cell deployments would require essentially the same physical footprint for each carrier as Wi-Fi which is likely already installed and is inherently a neutral host technolgy.

Risk. It’s also critical to consider the corresponding risks of adding up to four cellular unlicensed LTE networks to your Wi-Fi environment. It took about seven years and three full generations of radio designs for Wi-Fi vendors to perfect high-capacity stadium systems whereas LTE-U/LAA equipment is only beginning to ship. In short, it may be wise to delay comingling Wi-Fi and LTE-U/LAA networks until unlicensed LTE equipment becomes proven in less mission-critical settings than your venue.

Chuck Lukaszewski is Vice President of Wireless Strategy & Standards at Aruba Networks, a Hewlett Packard Enterprise company. For over a decade he has engineered and deployed large-scale 802.11 networks, joining Aruba in 2007.

Chuck has built Wi-Fi systems in stadiums, seaports, rail yards, manufacturing plants and other complex RF environments, including serving as chief engineer for many stadiums ranging from 20,000 to 100,000 seats that provide live video and other online amenities. He is the author of six books and design guides including Very High Density 802.11ac Networks and Outdoor MIMO Wireless Networks.

First Look: Inside the Atlanta Falcons’ new Mercedes-Benz Stadium

Big Bird greets all visitors to Mercedes-Benz Stadium. Credit all photos: Paul Kapustka, MSR (click on any photo for a larger image)

We’ll have much more to report on what we saw at the press day at the Atlanta Falcons’ new Mercedes-Benz Stadium, but we thought it was important to share these views as soon as we could — so here is an extended photo essay from the newest NFL venue (which will also be used for soccer). Unfortunately the Wi-Fi and DAS networks were live but not yet optimized, so we weren’t able to do any comprehensive speed testing (but hey, that’s what a regular season game is for!).

Overalll first impressions, technology wise — this is another well thought out venue specifically from a technology standpoint but also mainly just from a visual feel. The halo board is as impressive as advertised, though we would want to see it in action during a game (while sitting in a seat) to fully judge whether or not it fits in with the flow of an event. For advertisers it’s a wonder, as watching all the video screens in the house go to a synchronized ad video was a big wow factor.

Since much of the stadium interior is unfinished concrete, there wasn’t much of an effort to hide networking components — but given all the other piping and cabling, the equipment does kind of fade out of sight in plain view.

MSR welcomes you to the big house

It’s our educated guess that the AT&T Porch — a wide open gathering area in the end zone opposite the windows toward downtown — is going to be a popular hangout, since you can see the field and have multiple big screen TV options behind you. We also liked the “technology loge suites,” smaller four-person private areas just off the main concourse with their own small TV screens and wireless device charging.

On the app side of things, it’s fair to say that features will iterate over time — both the wayfinding and the food-ordering options are not wirelessly connected yet, but according to IBM beacons are a possible future addition to the mix. And while Mercedes-Benz Stadium is going to all-digital ticketing, season ticket holders will most likely use RFID cards on lanyards instead of mobile phone tickets simply because the RFID is a quicker option. The ticket scanners are by SkiData, fiber backbone by Corning, Wi-Fi APs by Aruba, and DAS by Corning and a mix of antenna providers.

Like we said, more soon! But enjoy these photos today, ahead of the first event on Aug. 26.

The view inside the main entry, with halo board visible above

The view from the other side of the field, from the AT&T Porch

Just hard to fit all this in, but you can see here from field to roof

I spy Wi-Fi, APs point down from seat bottoms to main entry concourse

One of the many under-seat APs

A good look at the roof: Eight “petals” that all pull straight out when open, which is supposed to take 7 minutes according to design

Good place for maximum coverage

View from the field

One of “hundreds” of mini-IDFs, termination points that bring fiber almost right to edge devices

The mega-vertical TV screen, just inside the main entry. 101 feet tall!

Something Falcons fans may like the most: Look at the prices!

MORE SOON!

More Wi-Fi consolidation as Riverbed acquires Xirrus

Network management company Riverbed announced a definitive agreement to acquire Wi-Fi provider Xirrus, for an undisclosed fee. The move is just the latest in a string of acquisitions of standalone Wi-Fi companies, following Hewlett Packard’s purchase of Aruba in 2015 and the journeys of Ruckus Wireless, which was first bought by Brocade and is now on its way to being a part of Arris.

While Riverbed said it would continue to offer Xirrus’ Wi-Fi products as a standalone business, its interest in Xirrus’ Wi-Fi technology is most likely in the enterprise office market. While nowhere near the size of players like Cisco or Aruba in the stadium wireless networking arena, Xirrus did have some wins in the space, including deals where its equipment was resold by Avaya. More as we hear more on the deal.

Will stadiums soon be able to rent their Wi-Fi networks from equipment vendors?

Nationwide Arena. Credit: Columbus Blue Jackets

Nationwide Arena. Credit: Columbus Blue Jackets

If it costs too much to buy a Wi-Fi network for your stadium, why not rent one instead?

A fairly common option in the world of enterprise networking, the ability to rent, or lease a fully operational Wi-Fi network may soon be coming to the world of sports stadiums and other large public venues, if it isn’t here already. Three of the largest Wi-Fi gear suppliers, Cisco, Aruba and Ruckus, already have public offers of network leasing arrangements, where venue owners could pay some kind of monthly or recurring fee for network setup and operation, instead of buying equipment outright. And Cisco, another leader in the marketplace, is rumored to be offering full-control lease-type arrangements for stadium Wi-Fi networks, possibly beginning with the new Wi-Fi network being built at the SAP Center in San Jose.

Though no large sports stadium has yet publicly announced a deal to lease, or in networking lingo, to buy a “Network as a service,” or NaaS, the idea is potentially attractive to stadium owners and operators, many of whom have struggled with the return-on-investment question ever since the idea of putting wireless networks in stadiums has emerged. While cellular carriers have so far borne the lion’s share of the costs of deploying enhanced cellular systems like DAS (distributed antenna system) in stadiums, the question of “who will pay for the Wi-Fi” is still a big one for many venues, especially those that are only filled several times a year.

The benefits of moving to opex vs. capex

Bart Giordano, vice president of business development for the Ruckus business unit at Brocade, said the idea of leasing a stadium network could be attractive especially to venue owners who don’t have the upfront capital necessary to pay for Wi-Fi, a cost that could run into the tens of millions of dollars.

Under new parent Brocade, Ruckus Wi-Fi gear can be obtained via something called the Brocade Network Subscription, a NaaS program that Giordano said “converts it all to opex — you subscribe to the network and pay a monthly service fee.” Under the subscription program, Giordano said Brocade/Ruckus will actually own the equipment, allowing the venue owner the flexibility of being able to return it or upgrade it as needed.

With many stadiums that deployed Wi-Fi several years ago already going through significant upgrades, the idea of a leased network that could be more easily refreshed with new technology might soon gain favor. Though no Ruckus stadium subscribers have yet been announced, Giordano said “some are coming.”

Aruba, now a Hewlett Packard Enterprise company, has a similar subscription model plan for enterprise wireless deployments, one which company representatives said could be used by stadiums as well. Both companies said such deals could possibly come via consulting partnerships, where the consultant firm manages the relationship and deployment/operation details.

Cisco also has a leasing option available for wireless networks, but so far has not made any public announcements of such deals in the sports stadium marketplace. However, there are reports of Cisco taking a more active role in the ownership, deployment and operation of stadium networks, like the Cisco-powered Wi-Fi currently being installed at the SAP Center in San Jose, home of the NHL’s Sharks. So far, neither Cisco nor the Sharks will comment on any business specifics of the new Wi-Fi network other than its use of Cisco gear.

Can leasing work for stadiums?

While the leasing idea for stadiums isn’t new, the business model has met some challenges along the way of the short history of wireless networks in large venues. So far, third-party integrators like Mobilitie, ExteNet Systems and Boingo have crafted lease-like deals in which the venue does not pay the full cost of the network but instead allows the operators to run networks (typically both DAS and Wi-Fi), earning money by leasing space on those networks to wireless carriers or by selling advertising or sponsorships.

Another leasing model, one that crashed and burned, was the one employed by SignalShare, a company now in bankruptcy proceedings with legal claims of fraudulent business practices against it. SignalShare, which also offered venues networks for a monthly cost, may have been hampered by a lack of financial resources, something that shouldn’t be an issue for companies the size of Cisco, HP and Brocade, who will mainly be offering leases on equipment they manufacture themselves. The larger equipment vendors may also not be under as much pressure as SignalShare was to earn revenues on the network operations, which may make them better able to succeed in the NaaS space.

And while the idea sounds good in theory, there are still unanswered questions about how the leases would work, and whether they will make good business sense for both sides. Unlike enterprise operations in traditional offices, stadium networks are far more complex to install and operate, especially those being retrofitted in stadiums built decades ago. Stadium networks also have a much different operational profile, with traffic coming in large spikes rather than daily workday routines.

But stadium networks can also act as public advertisements of sorts, gaining more attention for vendors in PR than perhaps in direct profits. As the market matures and vendors seek out potential customers who have shied away from Wi-Fi in the past due to upfront costs, leasing may be a way forward for both sides — as long as both can find a benefit to the deal.

Extreme buys Zebra’s WLAN biz for $55 million

Wi-Fi gear vendor Extreme Networks beefed up its lineup today with the acquisition of the wireless LAN business of Zebra Technologies, a $55 million deal that is scheduled to close later this year.

While it’s not apparent how the Zebra acquisition will affect Extreme’s stadium and large public venue businesses, it seems like some of the Zebra products including their security and managed services offerings could be a fit for teams in the market for Wi-Fi.

Network World has a good breakdown of the deal, including a quote from Gartner which says Zebra gear should be on the short list for customers in the retail and hospitality businesses (among others) as well as verticals with location requirements, which would seem to include stadiums. Any Zebra users in stadium deployments out there, give us a holler and let us know what you think.

At the very least, the deal is just another sign of consolidation in the Wi-Fi industry, a trend that has seen Brocade buying Ruckus and HP buying Aruba in the bigger deals to date.

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