BNP Paribas Open serves up new app from YinzCam

Screen shot of new BNP Paribas Open app from YinzCam.

The BNP Paribas Open, one of the premier stops on the professional tennis tour, has tapped YinzCam to provide a new app for this year’s event that includes support for a wide range of services including ticket purchases, wayfinding, transportation to and from the venue, and a schedule of matches.

The new app, available for iOS and Android devices, is the first tennis-venue app for YinzCam, whose market-leading list of customers is mainly in U.S. professional sports, including the NHL, the NFL and the NBA. Reflecting YinzCam’s historic excellence in providing content to mobile apps, the BNP Paribas Open app will include biographies and photos for the more than 200 women and men players from the WTA and the ATP World Tour. According to YinzCam, the app will also support live scoring and real-time match results.

Probably one of the more important features to fans at the Indian Wells Tennis Garden, the tournament’s host venue, is the interactive map, which provides information on food and beverage options as well as other services (restrooms, ticket offices, etc.) as you scroll through the map. YinzCam said the app also has a chatbot to answer questions, though when we tried asking it “will Roger Federer win?” it asked us to rephrase the question because it didn’t understand.

As previously reported by MSR, the Indian Wells Tennis Garden is well covered for Wi-Fi with a network using gear from Ruckus; apparently, the new app replaces the previous app developed by The App Company of Palos Verdes Estates, Calif.

Minneapolis airport sees 6 TB of Wi-Fi traffic day after Super Bowl

Super Bowl signs hang in the concourse at Minneapolis-St. Paul airport. Credit: MAC (click on any photo for a larger image)

A day after Super Bowl 52 at U.S. Bank Stadium in Minneapolis set new records for wireless data consumption, the Minneapolis-St. Paul International airport had a big wireless day of its own, with 6 terabytes of traffic used on the airport’s Wi-Fi network and another 6.5 TB on the Verizon cellular network.

Eduardo Valencia, vice president and chief information officer for the Metropolitan Airports Commission, said the Wi-Fi data used on Feb. 5 was “close to double typical data consumption” on the free-access network provided by Boingo Wireless, even though the airport saw a fairly normal range of users connecting.

“There was no spike in [the number] of users, but the users who did connect consumed twice as much data, with downloads about 3 times normal,” Valencia said. The Monday-departure crowd, he said, saw about 31,000 unique users connect to the Wi-Fi network, which Valencia said “is at the top of the normal user range” the airport network usually sees. Valencia said that during the week leading up to the big game on Feb. 4, the airport Wi-Fi saw between 23,000 and 31,000 daily connections.

Boingo, which has been powering the Wi-Fi at Minneapolis-St. Paul International Airport (aka MSP) since 2012, updated and expanded coverage a year ago, according to Valencia. Though Boingo would not provide details on how many new APs were added or how many the network has now, Valencia said coverage was increased in many areas, like the tunnels between terminals, to make sure visitors didn’t lose connectivity.

New neutral host DAS from Verizon

Super Bowl LII signage along a moving walkway at MSP. Credit: MAC

The cellular infrastructure at the airport also got an upgrade before the Super Bowl, with a neutral host distributed antenna system (DAS) deployed by Verizon Wireless. The DAS, which uses Corning ONE fiber equipment on the back end, provided coverage for all the top wireless carriers, Valencia said. Though it was cut close — the final pieces went live on Jan. 19, according to Valencia — the expanded DAS, which added antennas all over the terminals as well as outside covering runways, also performed well, according to Valencia.

Though only Verizon stats were available, Valencia said Verizon saw an average of 2.8 TB of data per day in an 11-day span around the Super Bowl, with 6.5 TB of traffic seen on Monday, Feb. 5. Like the Wi-Fi traffic, Valencia said Verizon’s day-after total was about double the average daily consumption.

While there is extra pressure to perform ahead of the NFL’s big game — “The NFL told us the Super Bowl experience begins and ends at the airport,” Valencia said — the payoff will stay for years, as all the new network gear added in advance is permanent.

“We swallowed hard for 9 days, but the success was the culmination of a lot of planning,” Valencia said. “Now the good thing is, everything [in the network] is here to stay.”

Connectivity at the core of Little Caesars Arena, District Detroit

Little Caesars Arena, the new home for the Detroit Red Wings and the Detroit Pistons. Credit: Olympia Entertainment (click on any photo for a larger image)

Bringing great wireless connectivity to a new stadium is almost table stakes these days. But building up a nearby commercial district — and keeping connectivity high outside the venue’s walls — is a bet of another level, especially in Detroit where networks extend outside the new Little Caesars Arena into the 50-block District Detroit.

Following the arena’s opening in September of 2017, the prognosis so far is so far, so good, with solid reports of high network performance on both Wi-Fi and cellular networks in and around the new home of the NHL’s Detroit Red Wings and the NBA’s Detroit Pistons. But for John King, vice president of IT and innovation for venue owners Olympia Entertainment, the responsibilities for him and his network team extend far beyond the new stadium’s walls.

“We’re focused on the [wireless] signal not just in the bowl, but also in the surrounding elements — the streets, the outdoor arenas, and the Little Caesars Arena garage,” said King in an interview shortly after the arena opened. “The vision is, to be connected wherever you are. And to share that experience.”

An ambitious revival in downtown Detroit

Editor’s note: This profile is from our most recent STADIUM TECH REPORT for Winter 2018, which is available for FREE DOWNLOAD from our site. This issue has an in-depth look at the wireless networks at U.S. Bank Stadium in Minneapolis, as well as profiles of network deployments at the Las Vegas Convention Center and Orlando City Stadium! DOWNLOAD YOUR FREE COPY today!

The inside concourse at Little Caesars Arena. Credit: Olympia Entertainment

Built nearby the Detroit Lions’ Ford Field and the Tigers’ Comerica Park, the new hoops/hockey stadium seats 19,515 for hockey and 20,491 for basketball. Unlike many stadiums of the past which rise up from the ground, Little Caesars Arena is built into the ground, 40 feet below street level. The innovations in construction and accessibility, including an outdoor arena adjacent to the indoor one, may require another full profile and an in-person visit. For now, we’ll concentrate on the wireless deployment in and around Little Caesars Arena, which was funded in part by a sponsorship from Comcast Business, which provides backbone bandwidth to the arena and the district in the form of two 100 Gbps connections. The Wi-Fi network design and deployment, done by AmpThink, uses Cisco Wi-Fi gear; Cisco’s Vision for Sports and Entertainment (formerly known as StadiumVision) is used to synchronize video output to the 1,500 TV screens located in and around the venue.

On the cellular side, Verizon Wireless built a neutral-host DAS, which was getting ready to welcome AT&T as the second carrier on board shortly after the opening. According to King, the Wi-Fi network has approximately 1,100 total APs both inside and outside the arena, many of those from Cisco’s 3802 series, which each have two radios per AP. For many of the 300 APs located in the main seating bowl, Little Caesars Arena went with an under-seat deployment, with some others placed in handrail enclosures, especially for the basketball floor-seating areas.

“AmpThink did a really nice job with the deployment,” said King, who said the arena’s open-air suite spaces helped provide “lots of flow” to wireless gear, without the historical overhangs around to block signals on different levels. One early visitor to the arena saw many Wi-Fi speed tests in the 50-60 Mbps range for both download and upload, as well as several in the 80-to-100 Mbps range, signs that a strong signal was available right at the start.

“We’ve still got a lot of tuning, but early on we’re getting great results,” said King of the Wi-Fi performance. “Our goal is to make it the best it can be.”

Staying connected outside the walls

Like The Battery area surrounding the Atlanta Braves’ new SunTrust Park, the District Detroit is meant to be a stay-and-play kind of space, with restaurants, clubs, office spaces and residences seeking to lure visitors and residents to do more than just see a game. For King and his team, one of their tasks is to ensure that visitors can stay connected no matter where they are inside the district, including inside restaurants, offices and other indoor spaces.

Connectivity blends well with the architecture inside Little Caesars Arena. Credit: Tod Caflisch, special to MSR

“We want the [network] signal to be robust, to carry into outdoor spaces, restaurants and many other areas” inside the District Detroit, King said. “We want to push the envelope a little bit and create a useful opportunity.”

Back inside Little Caesars Arena, the team and stadium apps are built by Venuetize, which built a similar integrated app for the Buffalo Bills and the Buffalo Sabres, one that also extends outside arenas to support connectivity in city areas. King said that Little Caesars Arena will be testing pre-order and express pickup concession ordering through the app, with a focus on seating areas that don’t have ready access to some of the club facilities.

Like any other new facility, Little Caesars Arena will no doubt go through some growing pains in its debut season, but for King and others who spent time getting the venue ready it’s fun to have the doors open.

“It’s really great seeing it all come to life,” King said.

Fans use 16.31 TB of Wi-Fi data during Super Bowl 52 at U.S. Bank Stadium

A Wi-Fi handrail enclosure at U.S. Bank Stadium in Minneapolis. Credit: Paul Kapustka, MSR (click on any photo for a larger image)

It is now official — we have a new record for most Wi-Fi data used at a single-day event, as fans at U.S. Bank Stadium in Minneapolis for Super Bowl 52 used 16.31 terabytes of data on the Wi-Fi network.

According to statistics compiled by Extreme Networks during the Philadelphia Eagles’ thrilling 41-33 victory over the New England Patriots Sunday night, the AmpThink-designed network which uses Cisco Wi-Fi gear also saw 40,033 unique users — 59 percent of the 67,612 in attendance — a new top percentage total for any single-game network experience we’ve been told about. (The Dallas Cowboys saw approximately 46,700 unique Wi-Fi users during a playoff game last season, about 50 percent of attendance at AT&T Stadium.)

The network also saw a peak concurrent connection of 25,670 users, and a peak data transfer rate of 7.867 Gbps, according to the numbers released by Extreme. Though Extreme gear was not used in the operation of the network, Extreme has a partnership deal with the NFL under which it provides the “official” network analytics reports from the Super Bowl.

The final total of 16.31 TB easily puts Super Bowl 52 ahead of the last two Super Bowls when it comes to Wi-Fi data use. Last year at NRG Stadium in Houston, there was 11.8 TB of Wi-Fi use recorded, and at Super Bowl 50 in 2016 there was 10.1 TB of Wi-Fi data used at Levi’s Stadium in Santa Clara, Calif. So in reverse chronological order, the last three Super Bowls are the top three Wi-Fi events, indicating that data demand growth at the NFL’s biggest game shows no sign of slowing down. Combined with the 50.2 TB of cellular data used in and around the stadium on game day, Super Bowl 52 saw a total of 66.51 TB of wireless traffic Sunday in Minneapolis.

Confetti fills the air inside U.S. Bank Stadium after the Philadelphia Eagles defeated the New England Patriots in Super Bowl LII. Credit: U.S. Bank Stadium

Super Bowl 52 represented perhaps a leap of faith, in that the handrail-enclosure Wi-Fi design had not yet seen a stress test like that found at the NFL’s biggest event. Now looking ahead to hosting the 2019 Men’s NCAA Basketball Final Four, David Kingsbury, director of IT for U.S. Bank Stadium, can be forgiven for wanting to take a bit of a victory lap before we set our Wi-Fi sights on Atlanta’s Mercedes-Benz Stadium, home of Super Bowl 53.

“AmpThink, CenturyLink and Cisco designed and built a world-class wireless system for U.S. Bank Stadium that handled record-setting traffic for Super Bowl LII,’ Kingsbury said. “AmpThink president Bill Anderson and his team of amazing engineers were a pleasure to work with and the experts at Cisco Sports and Entertainment supported us throughout the multi-year planning process required for an event of this magnitude. High-density wireless networking is such a challenging issue to manage, but I am very happy with our results and wish the team in Atlanta the best next year. The bar has been raised.”

THE LATEST TOP 10 FOR WI-FI

1. Super Bowl 52, U.S. Bank Stadium, Minneapolis, Minn., Feb. 4, 2018: Wi-Fi: 16.31 TB
2. Super Bowl 51, NRG Stadium, Houston, Feb. 5, 2017: Wi-Fi: 11.8 TB
3. Super Bowl 50, Levi’s Stadium, Santa Clara, Calif., Feb. 7, 2016: Wi-Fi: 10.1 TB
4. Minnesota Vikings vs. Philadelphia Eagles, NFC Championship Game, Lincoln Financial Field, Philadelphia, Pa., Jan. 21, 2018: Wi-Fi: 8.76 TB
5. Kansas City Chiefs vs. New England Patriots, Gillette Stadium, Foxborough, Mass., Sept. 7, 2017: Wi-Fi: 8.08 TB
6. Green Bay Packers vs. Dallas Cowboys, Divisional Playoffs, AT&T Stadium, Arlington, Texas, Jan. 15, 2017: Wi-Fi: 7.25 TB
7. Southern California vs. Notre Dame, Notre Dame Stadium, South Bend, Ind., Oct. 21, 2017: 7.0 TB
8. WrestleMania 32, AT&T Stadium, Arlington, Texas, April 3, 2016: Wi-Fi: 6.77 TB
9. Super Bowl 49, University of Phoenix Stadium, Glendale, Ariz., Feb. 1, 2015: Wi-Fi: 6.23 TB
10. Georgia vs. Notre Dame, Notre Dame Stadium, South Bend, Ind., Sept. 9, 2017: Wi-Fi: 6.2 TB

U.S. Bank Stadium in Minneapolis before the start of Super Bowl LII

Eagles see 8.76 TB of Wi-Fi data for NFC Championship game on new Panasonic network

Panasonic Everest Wi-Fi APs (lower left, middle right) mounted underneath an overhang at Lincoln Financial Field in Philadelphia. Credit: Panasonic (click on any photo for a larger image)

The Philadelphia Eagles saw 8.76 terabytes of Wi-Fi data used at Lincoln Financial Field on Jan. 21 during the Eagles’ 38-7 win over the Minnesota Vikings in the NFC Championship game, a new high in one-day Wi-Fi usage for reported marks in games not called the Super Bowl.

Though the game’s position as No. 3 on our unofficial “top Wi-Fi” list (see below) may change as we get reports from other recent NFL playoff games, the mark is nevertheless impressive, and perhaps a big confirmation metric for Panasonic’s nascent big-venue Wi-Fi business. According to Panasonic, its 654-Access Point network inside “The Linc” also saw 35,760 unique connections during the game, out of 69,596 in attendance; the network also saw a peak of 29,201 concurrent devices connected (which happened during the post-game trophy presentation), and saw peak throughput of 5.5 Gbps.

What’s most interesting about the new Panasonic network in Philadelphia is that it is a completely top-down deployment, meaning that most of the APs (especially the 200 used in the seating bowl) shoot signals down toward seats from above. While most new networks at football-sized stadiums (and some smaller arenas) have turned to under-seat or railing-mounted APs to increase network density in seating areas, Panasonic claims its new “Everest” Wi-Fi gear has antennas that can provide signals up to 165 feet away, with “electronically reconfigurable directional beam profiles” that allow for specific tuning of where the Wi-Fi signal can point to.

By also putting four separate Wi-Fi radios into each access point, Panasonic also claims it can save teams and venues money and time on Wi-Fi deployments, since fewer actual devices are needed. By comparison, other big, new network deployments like Notre Dame’s often have a thousand or more APs; Notre Dame, which uses railing-mounted APs in the seating bowl, has 685 in the seating bowl out of a total 1,096 APs. Many of the Notre Dame APs are Cisco 3800 devices, which have two Wi-Fi radios in each AP.

‘The Linc’ before last week’s NFC Championship game. Credit: Kiel Leggere, Eagles

Atlanta’s new Mercedes-Benz Stadium, which uses Aruba Wi-Fi gear mainly deployed under seats in the bowl, has nearly 1,800 APs, with 1,000 of those in the seating bowl.

Antennas close to fans vs. farther away

From a design and performance standpoint, the under-seat or railing-mounted “proximate” networks are built with many APs close together, with the idea that fans’ bodies will intentionally soak up some of the Wi-Fi signal, a fact that network designers use to their advantage to help eliminate interference between radios. The under-seat AP design, believed to be first widely used by AT&T Park in San Francisco and then at a larger scale at Levi’s Stadium in Santa Clara, Calif., was developed to help bring better signals to seats where overhang-mounted APs couldn’t deliver strong connectivity. Older concrete-bowl stadiums like Notre Dame’s also went with a proximate railing design for a similar lack of overhangs.

Though the Eagles’ IT team has repeatedly turned down interview requests from MSR since this summer, Danny Abelson, vice president connectivity for Panasonic Enterprise Solution Company, met with MSR last week to provide details of the deployment. Citing new, patented antenna technology developed specifically by Panasonic to solve the limitations of prior overhead gear, Abelson claims Panasonic can deliver a similar stadium experience for “two-thirds the cost” of an under-seat or railing-mount network design, with savings realized both in construction costs (since it is usually cheaper to install overhead-mounted equipment than under-seat or railing mounts due to drilling needed) and in the need for fewer actual APs, since Panasonic has four radios in its main Wi-Fi APs.

Eagles fans cheering their team to the Super Bowl. Credit: Hunter Martin, Eagles

Abelson, however, declined to provide the exact cost of the Panasonic network at Lincoln Financial Field, citing non-disclosure agreements. There are also more questions to be answered about a Panasonic deployment’s cost, including charges for management software and/or administration services. Currently, Abelson said, Panasonic includes the costs for management software and management personnel in its bids.

When it comes to how the Eagles found Panasonic, the team and the company already had an existing relationship, as Panasonic’s video-board division had previously supplied displays for the Linc. According to Abelson, Panasonic went through a performance test at several Eagles games last season, bringing in Wi-Fi gear to see if the new technology could provide coverage to areas where the Eagles said they had seen lower-quality coverage before. One of the forerunners in the NFL in bringing Wi-Fi to fans, the Eagles had previously used Extreme Networks Wi-Fi gear to build a fan-facing network in 2013. Though the Eagles would not comment about the selection process, after issuing an RFP this past offseason the team chose Panasonic for a new network, which Abelson said was deployed in three months during the football offseason.

Re-opening the debate for antenna placement?

Though Mobile Sports Report has not yet been able to get to Philadelphia to test the new network in a live game-day situation, if Panasonic’s new gear works as promises the company may find many potential interested customers, especially those who had shied away from deploying under-seat networks due to the construction issues or costs.

The Panasonic system may be of particular interest to indoor arenas, like hockey and basketball stadiums, where the gear could be potentially mounted in catwalk areas to cover seating. John Spade, CTO for the NHL’s Florida Panthers and BB&T Center in Sunrise, Fla., has tweeted favorably about a Panasonic deployment going in at the arena whose networks he oversees:

But even as the impressive 8.76 TB mark seen at the NFC Championship game now sits as the third-highest reported Wi-Fi data use event we’ve heard of (behind only the 10.1 TB of Wi-Fi seen at Super Bowl 50 and the 11.8 TB seen at Super Bowl 51), that number may fall a bit down the list if we ever get verified numbers for some network totals we’ve heard rumors about lately. (Or even any older ones! C’mon network teams: Check out the list below and let us know if we’ve missed any.)

So far this season, we haven’t gotten any reports of Wi-Fi usage out of the network team at Atlanta’s Mercedes-Benz Stadium (which recently hosted the college football playoff championship game), and we’ve only heard general talk about oversized playoff-game traffic at U.S. Bank Stadium in Minneapolis, home of Sunday’s Super Bowl 52. Like Notre Dame Stadium, U.S. Bank Stadium uses a mostly railing-mounted AP deployment in its seating bowl; both networks were designed by AmpThink. We are also still waiting for reports from last week’s AFC Championship game at Gillette Stadium, where the previous non-Super Bowl top mark of 8.08 TB was set in September; and from any games this fall at AT&T Stadium in Arlington, Texas, where the NFL’s biggest stadium has 2,567 Wi-Fi APs.

Will overhead still be able to keep up as demand for more bandwidth keeps growing? Will Panasonic’s claims of lower costs for equal performance hold up? At the very least, the performance in Philadelphia could re-open debate about whether or not you need to deploy APs closer to fans to provide a good Wi-Fi experience. If all goes well, the winners in renewed competition will be venues, teams, and ultimately, fans.

THE LATEST TOP 10 FOR WI-FI

1. Super Bowl 51, NRG Stadium, Houston, Feb. 5, 2017: Wi-Fi: 11.8 TB
2. Super Bowl 50, Levi’s Stadium, Santa Clara, Calif., Feb. 7, 2016: Wi-Fi: 10.1 TB
3. Minnesota Vikings vs. Philadelphia Eagles, NFC Championship Game, Lincoln Financial Field, Philadelphia, Pa., Jan. 21, 2018: Wi-Fi: 8.76 TB
4. Kansas City Chiefs vs. New England Patriots, Gillette Stadium, Foxborough, Mass., Sept. 7, 2017: Wi-Fi: 8.08 TB
5. Green Bay Packers vs. Dallas Cowboys, Divisional Playoffs, AT&T Stadium, Arlington, Texas, Jan. 15, 2017: Wi-Fi: 7.25 TB
6. Southern California vs. Notre Dame, Notre Dame Stadium, South Bend, Ind., Oct. 21, 2017: 7.0 TB
7. WrestleMania 32, AT&T Stadium, Arlington, Texas, April 3, 2016: Wi-Fi: 6.77 TB
8. Super Bowl 49, University of Phoenix Stadium, Glendale, Ariz., Feb. 1, 2015: Wi-Fi: 6.23 TB
9. Georgia vs. Notre Dame, Notre Dame Stadium, South Bend, Ind., Sept. 9, 2017: Wi-Fi: 6.2 TB
10. Alabama vs. Texas A&M, Kyle Field, College Station, Texas, Oct. 17, 2015: Wi-Fi: 5.7 TB

Smart stadium renovations bring wireless to the forefront

Vivint Smart Home Arena, home of the Utah Jazz

By Doug Lodder, Boingo Wireless

Over the last few years, the sports industry has marveled at the unveilings of new smart stadiums that enhance the fan experience and increase profitability through innovative technologies. In 2014, Levi’s Stadium was launched in the heart of Silicon Valley with endless tech features; in 2016, Sacramento’s Golden 1 Center opened its doors as an entirely solar-powered facility; and most recently, Atlanta’s Mercedes-Benz Stadium debuted the world’s largest video board, providing 63,000 square feet of screen in a continuous, roof-mounted oval which, when stretched out, is longer than the Eiffel Tower.

Technology has exerted massive influence on today’s sports venues, but the impact goes far beyond new stadiums. Outpacing new construction buildouts are stadium renovations that have a concentrated focus on more bite- sized refurbishments, such as upgrading technology features, revamping hospitality and entertainment offerings, and adding more expansive seating and exclusive suites.

Bank of America Stadium, Ford Field, Hard Rock Stadium, M&T Bank Stadium, Philips Arena, Raymond James Stadium, Vivint Smart Home Arena and Everbank Field are all among the major league sports facilities that have recently finished or kicked off renovation projects. The list continues if you add college to the mix, where Sun Devil Stadium, Neyland Stadium, Notre Dame Stadium and Kansas University’s Memorial Stadium are only a few examples of NCAA venues looking at or having undergone a facelift.

Mobile technology is the gold standard feature at stadiums and aging complexes are turning to high-tech renovations to stay relevant and attractive – all while fighting off a key competitor, the couch. At the heart of smart stadium upgrades are new wireless networks that can power the connected fan experience of the future, where new innovations like 5G and the Internet of Things (IoT) will open a vast world of possibilities. This is where the triple threat – DAS, small cells and Wi-Fi – take center stage; and where network features like density, speed and coverage become paramount. Knowing which of these wireless technologies to adopt and how to integrate them within a stadium remodel is no easy task, but here’s a few pointers venue executives should follow to unlock their potential.

Align Network Needs with Smart Stadium Strategy

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.

Nearly every aspect of a stadium renovation is designed with technology in mind, which means the demands on your wireless network will skyrocket. Map out a converged network blueprint that leverages both cellular and Wi-Fi to align with all corners of a remodel. The design should account for new tech rollouts, which may include everything from wayfinding and digital ticketing to line queuing, mobile concessions, cashless payment and new innovations powered via Artificial Intelligence (AI) and Virtual Reality (VR).

Kansas State’s Bill Snyder Family Stadium.

On the cellular side, opt for a DAS or small cell network for high capacity and widespread mobile coverage. Bringing strong cell signals closer to the fan via these networks is critical for combating the growing data surge at large venues and readying a stadium for 5G and IoT. Be sure to focus on the design of the cellular network during the planning phase to ensure antennas and other gear do not interfere with a remodel’s structural obstacles – for example, cement columns – and can transport mobile signals at full strength. It’s also critical that participation is brought in from all four Tier One carriers so fans have full bar coverage, regardless of their mobile service provider.

Remodels present the opportune time to adopt a public safety DAS, which transmit robust communication among first responders. Wireless solutions built for emergency preparedness have become a priority because many stadiums were built with older generation infrastructures, such as concrete walls, load-bearing columns and elevator shafts, which create “dead zones” that do not properly support cellular signals. This in turn makes it extremely difficult for first responders to communicate with each other, potentially delaying the course of action that is taken to handle an urgent situation. For first responders, a dropped signal has a profound impact on how they do their job – and if it can be done at all – underscoring the need for resilient public safety communications infrastructure. When looking at public safety DAS, ensure it supports 700 MHz and 800 MHz public safety services.

Advanced Wi-Fi networks must also be accounted for, with upgrades that supply more bandwidth and faster speeds. Smart venues should adopt premium Wi-Fi networks that increase the number of Access Points (APs) and support a combination of speed, density, security encryption and device flexibility.

To create a truly ubiquitous Wi-Fi experience – one that removes the headaches of log-ins, passwords, ads and other frustrations – smart stadiums can turn to Passpoint. Fans with a Passpoint profile installed on their device can enjoy a seamless and automatic Wi-Fi connection from the moment they enter the stadium or parking lot.

Passpoint networks provide a WPA2 encrypted connection automatically, ensuring enterprise-level security. With several IEEE 802.11 security features, Passpoint transforms the security position of devices connected to hotspots with guaranteed mutual authentication and over-the-air encryption, as well as restricted peer-to-peer traffic, helping to protect sensitive information. In short, fans get connected faster to a safer network, while alleviating concerns with cellular data plan overages – a game changer for today’s connectivity experience.

Adopt the Right Network Features

Network Functions Virtualization (NFV) and Software-Defined Networking (SDN) will soon find a home at stadiums. NFV is receiving heightened attention for its ability to eliminate the need for expensive hardware and physical infrastructure, while reducing capital expenditures (CapEx) and operating expenses (OpEx). Using cloud-based technology, NFV can upgrade a stadium’s network equipment – servers, switches and routers – to handle new standards like 5G, all while eliminating complete system overhauls. NFV improves scalability, increases data visibility, distributes data centers and keeps information integrity.

Complementary to NFV, SDN separates the network control logic from network equipment to make the network programmable; essentially, it centralizes command and control of the network without having to physically reconfigure or program individual devices. SDN can be used without NFV, and vice versa; however, when used together, the whole is greater than the sum of its parts.

Leave it to the Experts

Increasingly, in-house IT staff are opting for managed service providers to design and deploy wireless connectivity that is flexible and scalable – all within a tight remodel timeframe. By outsourcing to experts, the daunting task of building and launching the right architecture is removed, allowing IT to focus on other business matters tied to the remodel and day-to-day operations. The key is to pick a partner who has a proven track record designing, building and operating wireless networks in high-traffic venues. Relationships with all Tier One carriers are also essential; and be sure the partner can monitor the network 365/24/7.

It’s a Wireless World

Stadium renovations will remain a hot market for years to come. From consumers demanding a higher quality and more authentic experience, to the desire for sports venues to be more multipurpose, renovations have emerged as a major storyline. Add to this record crowds that continue to climb – all who want a high-tech experience. Over one million spectators packed the city of Houston for the 2017 Super Bowl alone.

To keep pace, both new stadiums and older existing arenas need to make sure they have both the best networks for now and the ability to scale for the future. No two renovations are alike, but wireless will have a huge influence across the board.

Doug Lodder is senior vice president of business development for Boingo’s DAS, small cell, offload and wholesale businesses, where he oversees the strategy and development of wireless networks for new and existing venue partnerships, as well as the monetization of those networks. He has nearly a decade of experience in managing telecommunications infrastructure in large-scale, high growth environments.