Super DAS, Part 2: Super Bowl stadium DAS expands to address increased demand for cellular connectivity

Editor’s note: This story is part 2 of a series of profiles of the providers of the extensive Distributed Antenna System (DAS) deployment for Super Bowl XLIX at and around the University of Phoenix Stadium in Glendale, Ariz. and other parts of the Phoenix city area as well. Stay tuned all week as we highlight how DAS will keep Super Bowl fans connected, no matter where they roam in and around Phoenix and Glendale this week and weekend.

DAS antenna inside the University of Phoenix Stadium. Credit all photos: TE Connectivity

DAS antenna inside the University of Phoenix Stadium. Credit all photos: TE Connectivity

Two years ago, the University of Phoenix Stadium had a pretty good distributed antenna system (DAS) network to handle cellular communications inside the building. But with Super Bowl XLIX coming to the Glendale, Ariz., facility this year, pretty good wouldn’t be good enough — so the stadium’s network operators expanded the DAS by almost 50 percent in preparation for the game-day network surge expected on Feb. 1.

For fans attending the big game with cellular devices in hand that information may be comforting enough; thanks to a bigger, better DAS that is built to service all the major U.S. wireless carriers, they should have no problem getting a signal. Stadium technology professionals, however, usually want to know more about such expansion plans: What does it really mean to increase DAS capacity? How does that new DAS stack up to others in different stadiums and arenas?

More sectors means more capacity

For the Crown Castle neutral-host DAS at the University of Phoenix Stadium, there is one quick measure of how much the DAS expanded: More sectors. In DAS parlance, a “sector” is an area that has a dedicated amount of base station capacity; for the University of Phoenix Stadium DAS, the number of sectors increased from 33 two years ago to 48 sectors now, according to John Spindler, director for product management at DAS gear maker TE Connectivity. TE’s FlexWave Prism and FlexWave Spectrum DAS gear are part of the infrastructure deployed by neutral host Crown Castle in the UoP network.

John Spindler, TE Connectivity

John Spindler, TE Connectivity

Without getting too deep into telecom physics, more sectors in the same amount of space means more capacity. And when it comes to all the different flavors of phones and carrier spectrum, there’s a lot that goes into a DAS to use up that capacity. With all four major U.S. carriers (AT&T, Verizon Wireless, Sprint and T-Mobile) using the DAS, the infrastructure must support a full range of cellular spectrum, from 700 MHz LTE signals to LTE, CDMA, UMTS and EVDO signals in the 800 MHz, 850 MHz, 1900 MHz and 2100 MHz bands. The DAS inside the stadium will use 228 remote antenna units, according to Crown Castle.

“More frequencies, more MIMO [multiple-in, multiple-out antenna-enhancement technology] and heavier sectoring,” is how Spindler described the general needs for most DAS upgrades, and for the UoP DAS, where Spindler foresees another big number for Super Bowl stadium DAS traffic on Feb. 1.

“I would expect to see record [DAS] numbers,” Spindler said.

One DAS to rule them all

DAS active integration panel

DAS active integration panel

Last year, the DAS situation at MetLife Stadium in New Jersey was especially tough to explain, since both AT&T and Verizon built their own separate infrastructures. According to AT&T its DAS customers at Super Bowl XLVIII used 624 gigabytes of traffic, a record then but a figure that has been surpassed many times this past football season at both college and pro football venues (the recent College Football Playoff championship game, for instance, saw 1.4 TB of DAS traffic for AT&T customers at AT&T Stadium). Verizon claimed last year that its customers used 1.9 TB of wireless data during the Super Bowl, but Verizon never provided specifics whether that number represented just DAS traffic, or Verizon customer usage of the MetLife Wi-Fi network as well.

Either way, the guess is that the DAS at the University of Phoenix Stadium will set new Super Bowl traffic records on Feb. 1, and by all accounts the infrastructure seems ready to handle it. Spindler, for one, said the Crown Castle DAS is “definitely well designed.” And Travis Bugh, senior wireless consultant for CDW (which installed the new Wi-Fi system at UoP), said he was also impressed by the performance of the Crown Castle DAS, which he said seems more than ready for the coming Super Bowl crush.

NEXT: What are the carriers doing to supplement the DAS coverage?

AT&T: DAS network also set traffic records for 2014 World Series games at AT&T Park

Giants CIO Bill Schlough (left) talks with workers in the park's main DAS head end facility.

Giants CIO Bill Schlough (left) talks with workers in the park’s main DAS head end facility.

In addition to the over-the-top Wi-Fi usage numbers, it turns out that the in-stadium AT&T cellular network also experienced record usage during the recent World Series games at AT&T Park, with Saturday night’s crowd using 477 Gigabytes of data, according to AT&T.

In case you’re not familiar with the DAS acronym, it stands for distributed antenna system, and basically is a network of small antennas that bring cellular service to the tightly packed fans inside stadiums or other large public venues. At AT&T Park, AT&T runs the network as a neutral host, meaning that Verizon Wireless, Sprint and T-Mobile customers can also use the DAS to connect. If you’re in the park and you haven’t enabled your device to connect via Wi-Fi, you’re probably connected via the DAS. However, the stats provided here are only for AT&T customers on the DAS, since AT&T doesn’t have visibility into the other carriers’ metrics. Since the Wi-Fi network is open to all, the Wi-Fi numbers we reported earlier are for all customers, no matter who their provider is.

But even just the AT&T cellular numbers are pretty impressive, perhaps not surprisingly so since a good-weather World Series game is a bucket-list event for most attendees, meaning that texts, tweets, selfies and Vines were likely flowing freely at all three games in San Francisco. Here’s a breakdown from AT&T about how much more data was used during the games last weekend:

— Fans used an average of approximately 447GB of data per game over the weekend on the AT&T cellular network. This is equivalent to more than 1.27M social media post with photos.

— The numbers represent an increase of approximately 29 percent in cellular data usage compared to the average game during the League Championship series vs. St. Louis.

— It’s an increase of approximately 109 percent in cellular data usage compared to the average game during the final home series of the regular season vs. San Diego (9/25-9/28).

— The peak hour of data usage during three home games was on 10/25 was from 5-6pm PT, the hour in which the first pitch occurred. In this hour more than 83GB of data crossed the AT&T venue-specific cellular network.

According to AT&T, the total combined Wi-Fi and AT&T DAS traffic hit a record high of 2.09 Terabytes on Oct. 25, the highest single-game total in AT&T Park network history. What would be even more interesting would be if we could get DAS statistics from Verizon, Sprint and T-Mobile to get the total-total number for wireless data consumed during the biggest games of the year.

Confirmed: KC has MLB-provided Wi-Fi, part of plan to bring Wi-Fi and DAS to all MLB stadiums

KC fans at seriesThe rumored Wi-Fi network at Kansas City’s Kauffman Stadium is now a confirmed entity, according to Joe Inzerillo, executive vice president and CTO for MLB.com. In a phone call Thursday, Inzerillo said the Royals’ new network is part of a league-wide effort to bring Wi-Fi to all MLB parks, a task he thinks may take another year or two to complete.

As MLB.com has stated publicly before — but maybe not spelled out in so much detail — it has a program under which Major League Baseball teams can “opt in” to have MLB.com and the nation’s top four wireless carriers participate in the funding and building of both Wi-Fi and DAS networks in MLB stadiums. Though he wouldn’t divulge the specific financial commitments for specific deals, Inzerillo said that under the program “everyone has some skin in the game,” though he did allow that the league and the carriers, not the teams, foot the bulk of the bills.

Still, Inzerillo stressed that individual teams play a huge role in the Wi-Fi deployments, from design to deployment to management on site. “It’s not just like we show up and we’re the Wi-Fi fairies,” Inzerillo said. “This program wouldn’t be possible without the teams and the work they do.”

Screen Shot 2014-10-23 at 1.27.54 PMGiven MLB’s synchronized digital strategy of having the same app — and only the same app — available for fans in each ballpark, Inzerillo said that having high-quality cellular and Wi-Fi networks in each stadium was a key necessity, especially to make MLB app functions like seat upgrades and concession purchases work.

“You need to have the right [network] plumbing in place or none of the other stuff matters,” Inzerillo said.

Kauffman Stadium’s network, Inzerillo said, was just one of about a dozen MLB Wi-Fi projects that got underway this year. That it was finished in time for postseason play was just luck, and not some last-minute installation due to the Royals’ on-field successes. “It was just a fortuitous thing that it was ready,” said Inzerillo, who said that construction of Wi-Fi at Kauffman had been ongoing for the past 5 to 6 months.

Though the network wasn’t promoted on the team’s website or anywhere else on the Internet, Inzerillo said the Royals were promoting it at the stadium. Even without a lot of advertising, fans found the network, he said, claiming “tens of thousands” of Wi-Fi connections during the Royals’ postseason run. However, Inzerillo also said some extra cellular trucks were brought in by some of the carriers for the Royals playoff games because the DAS at Kauffman isn’t quite finished yet.

Inzerillo said that anywhere from 22 to 26 teams will eventually end up using some combination of league-provided Wi-Fi and/or DAS. The league’s goal of having every stadium fully wired should be nearly complete by opening day of 2015, he said, with a more likely “final” goal of complete coverage reached sometime in 2016. In 2014, Mobile Sports Report research showed that 10 of the 30 MLB stadiums didn’t have fan-facing Wi-Fi; some of those teams (like Kansas City) will be getting MLB networks, while some other program participants are upgrading existing systems, Inzerillo said.

Under the MLB network deal, the DAS in each stadium will be a neutral-host deployment hosted by one of the four major U.S. cellular carriers — AT&T, Verizon Wireless, Sprint and T-Mobile — depending on things like regional/historical market share and existing contracts, Inzerillo said. While the carriers will operate the MLB DAS deployments, the Wi-Fi networks will be deployed, run and monitored by MLB, either from its New York City or San Francisco network operation centers, Inzerillo said. Wi-Fi gear will come mainly from Cisco, though Inzerillo said there is also a small percentage of Meru Networks gear based on teams that had previously installed Meru equipment.

Though Inzerillo said MLB may make some overall announcement once the league-wide project is completed, he didn’t necessarily think that having working Wi-Fi and DAS in stadiums was such a big deal.

“It’s kind of a weird thing to think about bragging about,” said Inzerillo, who compared Wi-Fi and DAS to plumbing as a basic stadium necessity, not an amenity. Having high quality networks, he said, “are table stakes for a modern facility.”

UPDATE: The Kansas City Royals are now officially promoting the Wi-Fi, with some usage claims:

AT&T Park networks averaged 1.24 Terabytes per game during NLDS

attparksign1As the San Francisco Giants get set to host the St. Louis Cardinals in Game 3 of the NLCS today (weather pending!) we can be reasonably assured that AT&T Park’s wireless networks will be able to handle whatever load the fans throw at them. According to AT&T, the park’s DAS and Wi-Fi networks carried an average of 1.24 Terabytes of traffic for the two most recent postseason contests, the NLDS games against the Washington Nationals on Oct. 6-7.

According to a recent AT&T local blog post, the DAS network at AT&T Park carried an average of 314 GB of traffic between the two games, with a high of 338 GB on the Oct. 7 game. Remember, these stats only reflect traffic of AT&T customers at the park — the actual total of DAS traffic would include usage from customers of Verizon Wireless, T-Mobile and Sprint, but none of those companies have (ever) reported DAS traffic usage. Still, the AT&T number is pretty impressive all by itself.

On the Wi-Fi side, AT&T said there was an average of 926 GB of data used per game — again, impressive when you consider that AT&T Park is a baseball stadium that only seats about 41,500 folks when it’s sold out. Since the Wi-Fi network is free and open to any wireless service customer, the 926 GB number reflects total data use. Combining the two gives you a figure of 1.24 TB average traffic per game. Now let’s see if Giants fans top that number this week.

UPDATE: We just got some fresh stats from AT&T for Tuesday night’s NLCS game at AT&T Park, and no surprise, more data was consumed. According to AT&T the fans at the Oct. 14 afternoon game used 1.38 TB of total data, with 1,067 GB on Wi-Fi and another 318 GB on the cellular DAS (remember those stats are AT&T customers only on the DAS). We’ll do another roundup after the three games are played this week to get averages.

Stadium Tech Report: DAS Group Professionals makes a name for itself with Levi’s Stadium DAS

DAS antennas hanging from a Levi's Stadium overhang. Credit, all Levi's photos: Paul Kapsutka, MSR

DAS antennas hanging from a Levi’s Stadium overhang. Credit, all Levi’s photos: Paul Kapsutka, MSR

If you look around at the walls, ceilings and overhangs at Levi’s Stadium, it’s hard to miss the small square boxes with the off-white color and a “DGP” logo in one corner. While the wires hanging out the back of each box make it an easy guess that the equipment has something to do with wireless networks, even many industry insiders may not know the company behind the boxes and the three-letter acronym.

Meet DAS Group Professionals, the Bay Area firm in charge of deploying a distributed antenna system (DAS) to make sure your cell phone gets a good signal at San Francisco 49ers games and any other event inside the 68,500-seat Levi’s Stadium. And while you might not be familiar with DGP, rest assured the company is extremely familiar with cellular deployments for large public venues, having installed similar DAS networks for airports, casinos and hotels, and even for San Francisco’s BART train system. Of course, most of that work was done when the company was called Forza Telecom, before changing its name to DGP earlier this year, another reason why “DGP” may not have rung any bells.

“It may appear like we just fell out of the sky, but we’ve actually built quite a few [DAS] systems,” said Steve Dutto, president of DGP, in a recent phone interview. “We’ve got years of experience.”

DAS antennas above a food stand

DAS antennas above a food stand

DAS: The Rodney Dangerfield of stadium connectivity

One thing that keeps firms like DGP in the shadows is the relative obscurity of DAS itself. While most people generally understand how cell phones work — you turn on your phone, and it connects to an antenna somewhere on a tower or rooftop — in crowded public facilities like stadiums, traditional cellular networks with towers several miles apart can’t handle the concentrated capacity. To provide connectivity for areas with large crowds, the latest tactic is to deploy a DAS, a network of lots of smaller antennas. Originally deployed in places like office buildings, hotels and convention centers, DAS is rapidly gaining favor in stadiums and arenas, helping to alleviate the “no signal” problem that has cropped up in many venues the past few years.

And while stadium Wi-Fi gets lots of headlines whenever it gets deployed — probably thanks again to the widespread understanding of how Wi-Fi works — there are already far more DAS deployments in stadiums than Wi-Fi, mainly because cellular carriers will pay almost all the associated costs of a DAS buildout to make sure their customers get a signal. According to our most recent 2014 State of the Stadium survey, 71.4 percent of our respondents said they had a full DAS at their facility, while only 35.7 percent had fan-facing Wi-Fi.

Steve Dutto, president, DGP

Steve Dutto, president, DGP

How does a DAS work? Usually, either a major cellular carrier or a third-party “neutral” host like DGP will build out the antenna infrastructure, which includes many small antennas and then cables to bring the connections back to a wiring room or data center. There, cellular carriers install their own cell-tower back-end gear to authenticate customers and to provide a connection to the company networks and the Internet. Since it’s in the cellular carriers’ interest to keep their customers connected (and using billable minutes and data), carriers will often pay the full cost of a DAS infrastructure by building and running it themselves. In the case like Levi’s, where DGP is the “neutral host,” DGP builds the infrastructure and then charges cellular carriers to use it.

Such deals are rarely publicized, and Dutto would not comment on how much each carrier was being charged to use the Levi’s DAS — though industry gossip has the figure somewhere around $5 million per carrier per year. And just like fight club, for many deployments the first rule of DAS is that you don’t talk about DAS, because no cellular carrier ever wants to admit that its network might need help. So just like Rodney Dangerfield, DAS often doesn’t get a lot of public respect. But at Levi’s Stadium and many other sports and entertainment venues, DAS is a booming business that would be sorely missed if it wasn’t there.

The ‘dream and the nightmare’ of building the Levi’s DAS

Now that DGP’s 700-plus antenna DAS deployment is up and running at Levi’s, Dutto can breathe a small bit easier. While the network is good business for the company and an obvious prominent calling card for the future, the aggressive deployment timeframe probably isn’t something Dutto is eager to repeat.

“Levi’s Stadium was both a dream and a nightmare [for DGP],” Dutto said, due in part both to the Niners’ aggressive performance expectations and the rapid buildout schedule. Of course, DGP was somewhat used to working quickly with the Niners — when the company put a DAS in Candlestick Park back in 2012 to solve that stadium’s legendary lack of connectivity, Dutto said it was deployed “in about 90 days.”

The success of the Candlestick deployment, Dutto said, led to the Niners offering the Levi’s DAS gig to DGP. With it, however, came the need to match the team’s out-front statements about how the stadium was going to be the best ever in terms of wireless connectivity. And with many people not knowing or not bothering to switch their phones to Wi-Fi, the Levi’s DAS, like most stadium DAS deployments, would probably handle most of the wireless connections.

Door sign for head end equipment room at Levi's Stadium (there are many of these)

Door sign for head end equipment room at Levi’s Stadium (there are many of these)

“We knew that it needed to be significantly better than anywhere else, right at the launch,” Dutto said. While the late addition of an early August soccer game at Levi’s pushed deployment schedules ahead even faster, Dutto said in the end it helped DGP overall.

“I wasn’t a big fan of getting ready for that date [the Aug. 2 soccer game was Levi’s first event] but it was a blessing in disguise,” Dutto said. “The trouble with a network is that you can’t really test it until everyone shows up. We got some good data from that event.”

After the “daily and nightly” discussions with the Niners’ tech team about antenna placements and other matters, the DAS network performed well when it mattered, during the Niners’ two preseason games on Aug. 17 and 24. According to a traffic report from the stadium tech team, the DAS network carried a combined 1.02 terabytes of wireless traffic for the two preseason games, which is on par with activity seen at big events in the past, like Super Bowls. According to Dutto DGP’s internal tests showed that few, if any, calls were dropped or didn’t connect.

“We’re at 98 percent [network performance] already, without [the network] being fully optimized,” Dutto said.

RF challenges and too many iPhone 4 customers

While many of the stadium’s Wi-Fi antennas are well hidden — including the ones in boxes under seats — the DAS antennas are a bit more prominent, especially if you are near where the first overhang comes close to the seats.

“Unfortunately, with Levi’s exposed steel-beam construction, if you want the DAS to work, you’re going to see it,” Dutto said. “It’s hard to be stealthy in there.”

And in many cases there isn’t just one but instead two DGP antennas side by side, which reflects the company’s decision to actually build two parallel DAS systems to better accomodate more wireless carriers. According to Dutto, AT&T and T-Mobile are based on one system, while Verizon Wireless, Sprint and public safety communications are handled by the other one. Currently, all the carriers are live on the DAS except for Sprint, which is still in the process of installing its back-end equipment.

DAS antenna in "Faithful Mile" area

DAS antenna in “Faithful Mile” area

One of the biggest challenges for DGP, Dutto said, comes from outside the stadium, and not inside. Like other open-air stadiums located in city cores, Levi’s Stadium faces significant interference from cellular antennas on nearby office building rooftops, as well as from the Santa Clara Convention Center right across the street.

“Less than a half mile from Levi’s you can see seven different rooftop cell sites,” said Dutto, who said the flat, open terrain around the stadium increases the ability for those signals to interfere with the stadium DAS deployment. Target Field in Minneapolis had some similar problems with cell antennas on nearby office buildings.

“We’ve done a lot of work with the carriers to adjust their macro networks around the stadium,” Dutto said. “We’ll do more of that as we go, and expect it to get better.”

And while Levi’s Wi-Fi network has shown itself to be incredibly robust, Dutto said that cellular connectivity over the DAS might be even faster than Wi-Fi in many instances, especially if fans have later-model phones with 4G LTE.

Even though Dutto said DGP’s testing recorded download speeds of up to 200 Mbps — and 65 Mbps sustained — he acknowledged that many Levi’s patrons might never see those kinds of numbers unless they snap up some of the new iPhone 6 models introduced by Apple this week. According to network stats collected by DGP during the preseason games, a lot of fans may be ready for an upgrade.

“There’s a lot more iPhone 4 users out there than we thought,” Dutto said.

Stadium Tech Report: Minnesota Twins tap InSite and TE Connectivity to get DAS ready for All-Star Game

Target Field, the downtown home of the Minnesota Twins. Credit: Minnesota Twins

Target Field, the downtown home of the Minnesota Twins. Credit all photos: Minnesota Twins

Even at a new stadium, getting the wireless network right is a constantly changing target. And for 4-year-old Target Field in Minneapolis, that meant an upgrade to the DAS not too long after the facility opened its doors.

“Nobody will ever have the perfect [network] install, and that’s part of the fun of it,” said John Avenson, vice president of infrastructure for the Minnesota Twins baseball club, in a phone interview with MSR. “The problem is not solvable as in, one year and you’re done. You need to be continuously improving.”

For the Twins, improving cellular connectivity was especially important since this year the club and the stadium will host baseball’s midsummer classic, the All-Star game. Thanks to help from InSite Wireless and DAS gear from TE Connectivity, Target Field’s DAS should be able to handle not just the overall growth in Twins fans’ wireless needs, but also the extra demands of a special event and all the selfies that go along with it.

“Fortunately, InSite and the carriers have been able to react quickly, and we should be ready for the test of the All-Star game,” said Dan Starkey, director for ballpark development and planning, in the same interview. “We’ll be ready to fully test the system.”

Wi-Fi and DAS, a perfect double play

Dan Starkey, director for ballpark development and planning

Dan Starkey, director for ballpark development and planning

As a new facility, Target Field was ahead of the curve when it came to Wi-Fi. On opening day the park had free Wi-Fi service for fans, with 225 access points initially available. “Back then that was a big number,” Avenson said. And while some carrier execs have been voicing an opinion that DAS is all that’s needed in a stadium, Avenson isn’t convinced.

“At this point you need both Wi-Fi and DAS,” he said.

Though the Twins do a good job of promoting the Wi-Fi service, most fans in stadiums everywhere usually default first to a cellular connection, either because they don’t know about the Wi-Fi, or don’t want to be bothered with the process or aren’t sure how to connect. Since people still think they should be able to send pictures or watch videos over a cellular connection, even at a crowded ballpark, that means the DAS – the Distributed Antenna System – needs to keep pace with all the smartphones and tablets being used.

“Some fans put their phones away [when they come to the stadium] but the younger crowd does not do that,” Avenson said. “Nothing interrupts their need for a good [wireless] experience.”

AllstarlogoAccording to Avenson, even before the facility opened the IT team new that they wanted a neutral host partner to lead the DAS effort.

“It just made sense to us,” said Avenson of having a neutral host DAS supplier, since as he said, carriers can be like siblings who have to share a bedroom. “InSite really enables the carriers, so they don’t have to fight with each other [over technology deployments].

Verizon Wireless and AT&T, the two biggest cellular carriers in the U.S., were on the neutral host DAS at the start, and were later joined by Sprint and T-Mobile. And even though the park is fairly new, Avenson said everyone involved realized quickly that wireless demands were growing, meaning that an upgrade was needed sooner rather than later.

According to the team, the most recent upgrades were to add MIMO capability for 1900 and AWS 2100 MHz bands, as well as adding four additional sectors in the bowl for AT&T. The new DAS can also support newer 4G LTE technologies, the Twins said.

“It’s just part of the evolution of DAS,” said Starkey. “Once we realized we needed additional coverage and capacity, InSite and the carriers acted quickly.”

Suite view of Target Field

Suite view of Target Field

The downtown difference

Like many other stadiums and large public facilities, Target Field had to be creative in finding space for the DAS head end equipment.

“In 2008 and 2009, we thought we’d fit it [the DAS head end] in a corner but it grew to a larger space and then that wasn’t big enough,” said Avenson, who added that AT&T and Verizon each have 10 to 12 cabinets of back-end gear for their DAS operations. “When the building was being built in 2008, the architects were not aware that we’d be needing more space. It’s amazing how much space and power a DAS takes at the head end.”

Adding to the complexity of the Target Field deployment is the fact that the field is in the middle of downtown Minneapolis, with large office buildings peeking over the roof of the stadium. According to Avenson, carriers and the team had to perform a series of reconfigurations to antennas both inside the park and out, so that the macro metro cellular network didn’t interfere with the DAS network inside the stadium.

“When the macro network wants to invade [the stadium] you have to push the macro network out,” said Avenson. “If you’re Miller Park [the baseball field in Milwaukee] and you have a big parking lot around the stadium you can control your own destiny. Parks in the middle of cities have a much different challenge.”

Editor’s note: This profile was originally published on May 1, 2014. It is also included in our Stadium Tech Report for Q2 2014, which you can download for free from our site.

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