Showing posts with label rural broadband. Show all posts
Showing posts with label rural broadband. Show all posts

Thursday, December 29, 2011

The Next Decade of Bandwidth - Part V

Wireless is the bandwidth service that gets most of the press these days, but there are big developments afoot in the wired world as well. We’ll wrap up our look into the next decade of bandwidth with what’s going on with copper and fiber optic services.

The future of computing is in the cloud...It’s no surprise that fiber optic networks are expanding. Some of this expansion is prompted by American Reinvestment and Recovery Act that appropriated $7.2 billion to expand broadband access across the country. Rural areas that have been largely ignored by commercial interests are especially targeted. With funds available for middle-mile fiber runs, competitive carriers are taking advantage of the opportunity to expand their networks.

While fiber is being trenched through the countryside to provide broadband delivery to Wireless Internet Service Providers (WISPs) that serve sparsely populated areas, even more fiber is being routed through metropolitan areas to hookup businesses of all sizes. Government incentives aren’t needed here. Businesses hungry for increased bandwidth either foot the bill for hookups to metropolitan fiber networks or commit to service levels that justify carriers to “light” their buildings for fiber service.

Why the interest in fiber optic connections? It’s not just mobile bandwidth that’s straining at the limits. T1 lines may have been all the bandwidth a small or even medium size business needed to handle email, general web browsing and communication with its website servers hosted elsewhere. Now, 1.5 Mbps seems a bit quaint and inadequate for all the smallest operations. What drives business now is cloud connections, Software as a Service, video conferencing, hosted VoIP and other bandwidth demanding applications.

The transition from 3G to 4G wireless also means that cellular carriers themselves are strained for fast enough backhaul connections. T1 lines works great to connect towers that handled voice calls. When users expect 10 or 15 Mbps of broadband service, fiber optics look like the ideal solution. The cost of construction, once a show stopper, becomes another part of the upgrade investment that’s paid once and offers almost unlimited upgrades for future needs.

Cloud computing is a major attraction for many businesses who find that pay-as-you-go is much easier to justify than requisitions for million dollar data center improvements. No need for racks and racks of servers, the environmentally controlled building to house them, the backup power generators, or the round-the-clock technical staff to keep everything running smoothly. Outsourcing that to a cloud service provider gets rid of those headaches, but adds a new one. How to you connect to the cloud? Low bandwidth, high latency connections will bring your operations to a grinding halt. What you need now is high bandwidth along with low latency, jitter and packet loss as a backbone to your virtual servers on the other side of the country. That means fiber optic lines and probably two of them for redundancy.

Fiber technology hasn’t been static during this expansion. Until recently you had a choice of SONET services from OC3 to OC12 and perhaps OC48. That was it. Now, Ethernet over Fiber is coming on strong as a direct competitor. Carrier Ethernet more closely matches the LAN networks that feed it. It is more scalable to meet changing business needs. Best of all, Ethernet services tend to cost less, often considerably less, than equivalent SONET fiber optic services.

But, wait! The era of copper is far from over. Just when carriers were thinking about decommissioning their twisted pair copper to let it corrode in the ground or be sold for scrap, Bonded T1 and Ethernet over Copper gain favor as business bandwidth options. While a single T1 line may be too constrained for many uses, multiple T1 lines can be bonded into a single larger bandwidth service up to 10 or 12 Mbps. Ethernet over Copper (EoC) technology uses the same twisted pair bundles as bonded T1, but a more advanced modulation scheme. EoC bandwidth is distance sensitive, but can easily deliver 10 or 20 Mbps to most businesses and 30, 50 or even 100 Mbps for short runs. Continuing development incorporating wireless techniques such as MIMO (Multiple Input, Multiple Output) for crosstalk cancelation is pushing the limits of copper into the hundreds of Mbps and even to a fiber-like Gigabit per second bandwidth.

The next decade of bandwidth is likely to be dominated by massive fiber optic build-outs for fixed locations, such as office and industrial parks, along with copper solutions to bridge the gaps where fiber doesn’t yet connect. Wireless is clearly headed for a common 4G LTE nationwide infrastructure. Compatibility will be built into portable and mobile devices, perhaps as prolifically as WiFi is now. There may be some surprises in store, such long range and interconnected WiFi hotspots or whitespace transmitters as wireless competitors, high bandwidth satellites covering rural areas better than spotty fiber and cable construction, and the development of much higher microwave frequencies (60 GHz and above) and even infrared mesh networks as new service options.

I hope you’ve enjoyed this speculative look into what’s likely to happen in the next 10 years or so, as our appetite for higher bandwidth Internet and private network connections demand satisfaction. There are many good options available right now to support your current business needs. You may not even be aware of how much development has been going on in your area to increase service levels and reduce costs. This would be an excellent time to get competitive options and quotes for business bandwidth services.

See what's available now in the way of T-carrier and Ethernet copper, SONET and Ethernet fiber, fixed wireless and Hybrid Fiber Cable (HFC). Get instant bandwidth pricing up to 1 Gbps and fast quotes on other services.

Click to check pricing and features or get support from a Telarus product specialist.


This has been a 5 part series on bandwidth. If you’ve missed any part of it, you can access Part I, Part II, Part III, or Part IV to catch up at any time.



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Monday, November 21, 2011

Thanks to Federal Recovery Act, Broadband Finally Coming to Rural Sauk County



Rural Internet access to improve.  (Baraboo News Republic, 11/21/2011)

Excerpt: The wait for broadband Internet is almost over for a rural third of Sauk County.

Reedsburg Utility received final approval Nov. 11 for its plan to install fiber-optic cables across the county and bring high-speed Internet to rural residents.

The approval came more than a year after the utility was awarded a $5.2 million federal Recovery Act grant to install the cable.

"We finally got the award notice last Friday," Utility Superintendent Dave Mikonowicz said Wednesday. "We knew we'd be getting it soon, so we had crews ready to go and broke ground right away."

Crews already have installed cables along several roads north of Reedsburg, including county Highways V and F and Farber and Old Town Hall roads. Ultimately, about 375 miles of cable will stretch from the northern end of Sauk County, along Interstate 90/94 and southwest to Loganville, Lime Ridge and Hill Point
.

Monday, October 17, 2011

Fiber Lit Towers Improving Rural Broadband

Anyone situated beyond the city limits knows the frustration of living in a bandwidth-free zone. Consumers and small businesses may be near enough to a cell tower to get 3G wireless and certainly two-way satellite is an option, but with severe download restrictions on both. Business sites and farmsteads can probably get T1 lines at 1.5 Mbps and maybe bonded T1 lines to improve a bit on that. How about high bandwidth wireless? Forget it. Fiber optic Ethernet connections? Are you nuts?

Rural towers lit with fiber optic bandwidth mean high speed service beyond the city limits...Rural America is truly at a disadvantage compared to the telecommunications resources found in cities and suburbs. The best options are found in the core of large metropolitan business districts. Move downtown in a big city and you’ll find such niceties as Gigabit Ethernet and even 10 Gig E connections. You may even be able to get Ethernet over Copper at 100 to 400 Mbps. Fixed wireless services easily deliver 50 to 100 Mbps bandwidth. If a shared bandwidth solution is OK for what you are doing, it’s hard to beat the Cable MSO prices.

Why the big discrepancy between metropolitan and rural service options? It’s all about infrastructure - the infrastructure that was never installed. Well, that’s in the process of changing right now. Level 3 Communications, one of the premier international telecom carriers, has established a program called EON or Extended On-Net sites. What they are doing is building out 500 additional access points to their fiber optic network. They are mostly in small and rural markets where there are few service options available. This is a wholesale, rather than retail, service intended to give local service providers access to high bandwidth carrier services.

Even with fiber optic gateways in the boonies, you still need a way to get the signals to the businesses and consumers without having to spend a fortune creating the remainder of the needed infrastructure. One technology that makes excellent sense for thinly populated areas is fixed wireless. WiMAX is an example of wide area coverage with significant service speeds. What you need, then, is access to the carrier-class fiber bandwidth plus a tower to transmit that bandwidth wirelessly to users scattered far and wide.

This sounds like a perfect opportunity for a combined effort and such a deal has been made. 52Eighty, a provider of tower infrastructure, has entered into an agreement with Level 3 to create 200 new wireless tower access sites situated near Level 3’s EON gateways. 52Eighty will take care of tower construction. Level 3 will provide transport and services that include private line, Ethernet and wavelength services. EON also offers backhauls that include Internet, VPN and voice services.

If this sounds a lot like what has been called the rural broadband initiative, it’s because that’s exactly what is going on. Level 3 is a key “middle mile” provider in bringing high speed network access to rural areas where local service providers can connect. They were awarded $13.7 million this summer through the American Recovery and Reinvestment Act and matched it with $4.2 million of their own funds to create dozens of middle mile connections in rural California, Florida, Georgia, Kansas, Tennessee and Texas.

Does this mean that relief is coming to disconnected consumers and businesses in Rural America? It’s certainly on the way. In fact, many carriers are expanding their wireline, broadband and fiber bandwidth services to garner new customers. If your ISP or business has been unable to get connectivity in the past, now is a good time to check availability and prices online for fiber optic lines to 1 Gbps, plus T1, ISDN PRI and other bandwidth services. You may be surprised by what has become available recently.

Click to check pricing and features or get support from a Telarus product specialist.




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Tuesday, August 23, 2011

Wireless Internet Access For Farms

There are many advantages to living and working on a farm, but one of the disadvantages is that broadband Internet access is harder to come by. No, DSL and Cable broadband probably aren’t in your future. But there are options available at reasonable prices right now.

Fixed wireless offers cost and performance advantages for rural broadband...It’s true that DSL and Cable are popular with independent professionals, small businesses and home-based occupations. You get a decent amount of bandwidth at a reasonable cost. The one hitch is that these services are distance limited. DSL signals decrease rapidly as you get a mile to two from the telephone company central office. Cable is a wired service that goes only where the Cable company has decided that there is enough population density to justify stringing the coaxial cable. Unfortunately, those factors keep Cable and DSL within or close to the city limits.

What you really want are either line services that don’t have distance restrictions or wireless services that don’t require stringing or burying cable of any type. There are several options that meet this description.

First is T1. This is a telco digital line service first used between telephone company switching centers. The beauty of T1 is that it is designed to be provisioned on two pair of ordinary telephone wires, available just about everywhere. The second advantage is that it was designed to work with regenerator boxes that clean up and boost the signal so that it can go another mile. You can generally get T1 line service miles from the nearest town, although it gets more expensive as you get farther out in the country.

Second is satellite. Satellite broadband service comes from above and needs no wires. All it requires is AC power that can even come from a gas generator or solar panels and an inverter. Disadvantages include the need to get a professionally installed two-way satellite dish installed on your roof and a half-second or so of latency due to the long path up to the stationary satellite. For many email and Web uses, this slight delay from issuing a command to getting data back is no big deal.

A third option is wireless terrestrial Internet service. Many communities have WISPs or Wireless Internet Service Providers. These tend to be locally owned and have a very limited service area. More often than not, WISPs target rural subdivisions and small towns to get enough customers to justify the cost of the equipment and bandwidth.

One of the most exciting new services is fixed wireless or cellular broadband. This service uses the data channels that every cell phone carrier has available for mobile phones and laptop computers. Accel Networks is a leader in this field and has contracts with the major carriers (AT&T, Verizon and Sprint) to connect with their broadband data channels. By combining the coverage areas of multiple carriers, Accel can pretty much blanket the nation except for mountainous and remote areas of the West where there is no cell phone coverage. If you can get a decent cell phone signal, you can probably get fixed wireless service.

The way this works is that Accel Networks customizes their standard interface box and antenna to optimize the signal strength for your particular location. That gives you a really good chance of getting a solid signal that will deliver decent bandwidth. How much bandwidth? This service is competitive with T1 lines with a minimum rate of 750 Kbps download and 250 Kbps upload, bursting up to 1 Mbps on downloads. This is more than adequate for most farm uses, such as getting agriculture reports, using email, general Web surfing and even watching video clips. It’s not intended for high intensity usage like downloading HD movies or running a server.

What makes fixed wireless broadband service so popular in rural areas is that it is readily available and costs half the price of a T1 line or less. Is this the right service for your farm, ranch or rural business? Get pricing, availability and complete details on fixed wireless broadband now. Installation is fast, often within a matter of days.

Click to check pricing and features or get support from a Telarus product specialist.




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Tuesday, August 3, 2010

T1 Broadband For Rural Business

Rural broadband is the subject of government stimulus dollars. It’s widely accepted that rural residential broadband users have been generally ignored by service providers due to low population densities. But what about businesses in rural areas? Are they also bandwidth starved?

Get T1 for Business in Rural Areas. Click to inquire.For the most part, there is no reason that a business in rural America need be deprived of broadband Internet access any more than they are deprived of multi-line telephone service. In fact, the same copper pair that transport telephone calls are also used to bring in broadband service.

Now, it’s true that low cost business DSL services are largely unavailable much beyond city limits. That’s because DSL is a distance limited technology. It’s very fast near the telephone company central office and drops off in speed as line length increases. Beyond a few miles there just isn’t anything left.

That problem doesn’t plague T1 lines. T1 service also uses twisted copper pair, usually in the same bundle with lines providing telephone service to business and residential users. But T1 was designed as a long-haul service to begin with. It is the foundation technology that telephone companies used to transform their office to office connections from analog to digital. Yes, the high frequency signals used by T1 do degrade with distance. But unlike DSL, T1 signals can be regenerated every mile or so to make them good as new.

If your business is located out in the sticks, you should still be able to get T1 service. T1 lines can bring in as many as 24 telephone calls for your PBX telephone system. They can provide a private point to point connection between multiple business locations. Or they can carry broadband Internet service at 1.5 Mbps for both upload and download. Note that T1 service is symmetrical. The upload and download speeds are the same. That’s almost never true with consumer broadband or many business DSL services.

While 1.5 Mbps is more than adequate for many small businesses, what if you need more? That’s also possible through a process called bonding. Bonding T1 lines together combines their bandwidth. For instance, with 2 T1 lines you get 2x the bandwidth or 3 Mbps. With 3 lines it moves up to 4.5 Mbps. Bonding 4 T1 lines gives you 6 Mbps, and so on. The practical limit to this is somewhere around 10 to 12 Mbps.

You should also be aware that Ethernet broadband services may be available in your area. Ethernet over DS1 or EoDS1 basically turns T1 lines into Ethernet transport lines. It’s not a universally available service at this time, but there might be cost or performance advantages if you can get it.

How much does all of this cost? Much less than ever before and perhaps a lot less than you’ve been thinking. There’s a good way to find out for sure. Get quotes for T1 and Ethernet broadband now. You may be surprised at your options.

Click to check pricing and features or get support from a Telarus product specialist.




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Tuesday, July 6, 2010

Is There a Broadband Stimulus Job For You?

The government is deploying another $795 million of the broadband stimulus funding, and just in time. The United States has been lagging other countries, including Japan and Korea, when it comes to the amount of bandwidth available to businesses and consumers at any reasonable price. At the same time, we are in what has been dubbed “The Great Recession,” with unemployment stuck at unreasonably high levels. Could there be a win-win here?

Get the government broadband stimulus to work for you.It looks like there may well be benefits for both today’s jobseekers and the long term prosperity of the United States. One report estimates
that the new high speed internet build-outs will create as many as 5,000 jobs right away. That may sound like a pittance, considering the millions looking for work, but it’s a move in the right direction. It’s also likely that the benefit from these jobs will multiply as new broadband resources come online. Once the bandwidth is available, there will be the urge to put it to good use. That means more computers, more wireless networks, more demand for video, more cloud services, and so on. It’s the nature of investment. There’s a multiplier effect as we gain new capability.

I deal mostly with business bandwidth. Since getting involved in this field nearly 7 years ago, I’ve seen a steady increase in demand for higher and higher speeds at lower prices. I originally launched T1Rex.com to sell competitively priced T1 lines. These have been the staple of small and even some medium size businesses. But a T1 line tops out at 1.5 Mbps. Seven years ago that was still considered a goodly amount of bandwidth. Now many, many businesses are moving up to 10 Mbps Ethernet. The pricing is similar to what T1 lines used to cost and the bandwidth is high enough to support rapid file transfers, fast Internet browsing and real-time video. What’s just as attractive as the speed and the price is the fact that 10 Mbps Ethernet can be delivered on existing copper wiring.

We’ve got a copper-based infrastructure that needs to move to a fiber infrastructure. All that copper is thanks to an earlier government initiative to ensure that every business and home had access to reasonably priced telephone service. All that’s happened is that those analog phone lines have been re-purposed for digital transmission. It’s the same copper. Some of it has been in the ground for a century.

But copper has its limits. Ethernet over Copper is good for up to 50 Mbps if you are within a mile or so of the central office. If you are out in the boonies or have the need for more bandwidth, you really need fiber. That’s no problem downtown. It’s a big problem as you move away from the densely packed city cores. Why no fiber where there’s lots of copper? It’s because the lower the population density, the more expensive per drop it becomes to bring in fiber optic services. It quickly becomes too expensive for businesses and ridiculously expensive for consumers.

This is what the broadband stimulus is intended to help fix. The idea is to build out what is called the “middle mile.” That’s the span from the provider’s main points of presence to smaller towns, neighborhoods and industrial parks. From there, it’s not so costly to hook up the “last mile” to actual users. That last mile or fraction thereof might be fiber, wireless, or even high speed copper.

We really need to think of our broadband infrastructure as a standard utility. No one thinks twice about expecting electricity and telephone service to be available. In most areas, water, sewer, and natural gas hookups are a given. Fiber optic lines need the same status. Bring in a bundle with both copper and fiber strands and you’ll have the best of both worlds. What’s more, our nation will have the 21st century resource to continue being a leader in science, business, education, and health care. It’s what we’ll need if we expect to maintain our lifestyle in a world where other nations are deploying broadband Internet as a strategic resource.



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