Industrial Data Communications 4th Edition

Chapter 7 - Wide Area Networks: WAN for the Mobile and Outer Lands

If there is to be a high-speed data service (more than 56 Kbps) to outlying areas in the
future it will have to be wireless, which is a form of radio. One should be careful of the
routing end points when using wireless; some are confined to point to point, others
connect to the Internet. Routing would depend on the service or services desired. One form
of wireless is the Universal Mobile Telecommunications Service (UMTS), which is a mobile
technology that has a data rate of up to 2 Mbps. Then there are the other mobile technologies,
such as General Packet Radio System, which offers a data rate of 56 to 114 Kbps, and
the Enhanced Data GSM Environment, which provides a data rate of 384 Kbps. At one
time, the most promising wireless technology for fixed (not mobile) customers was Local
Multi-point Distribution System (LMDS), which had a data rate of 155 Mbps. It used technology
similar to cell phones in that each transmitter covers a "cell," typically 3 to 5
kilometers in diameter, but the client is fixed and does not move. The technology is now
used by IEEE 802.16(fixed) and 16e (mobile) under the name WiMax. This is certainly a
promising technology for rural and perhaps urban customers.

At the moment, the only hope for rural areas that want high-speed access is by going to
satellite. Because at this time (2007), most of the mobile services are cell based, and thus
require a multitude of antennas and low-power repeaters. This does not appear to be a feasible
or cost-effective way to deliver services to rural or isolated areas (unless they are next
to a major highway). Residential users of satellite television, on the other hand, can get a
hybrid service that receives data via the satellite at DSL rates, but must use analog telephone
modems to upload data. Although some satellite suppliers will provide true up- and
downlink satellite service (for a price), and provides connection to the Internet, it is the only
high speed bidirectional option for many rural subscribers. An example is DirecPC, which is
a satellite-delivered service with a data rate of 400 Kbps. Again remember this is an Internet
connection, although the technologies could be employed otherwise as in a private
network. Anything other than normal generally has an astronomical rise in pricing.

Industrial users might wonder why they need to even consider a wireless WAN. One reason
is not because wireless WAN can reach isolated areas-in reality, few plants are built (other
than generating facilities) in isolation, and transportation infrastructure is needed for such
plants to operate. The main reason industrial users would consider wireless is that nearly
half the cost of any large networked installation is in the wiring (both initial and life-cycle
costs). The benefits of wireless can be great, although the WAN application isn't needed
(except for interplant communications). In the plant area, the technology developed for
wireless may filter down to the LAN applications. Having unbound nodes allows a great
deal of flexibility, but also comes with a host of problems, not the least of which is many
walls made of materials that are highly absorbent of radio frequencies, large amounts of
electrical noise, and many points for multi-path reception and thus the resulting interference.
Yet spread-spectrum technology (particularly the frequency-hopping type) overcomes
many of these problems. See our earlier discussion of wireless in chapter 3.

Table 7-3 illustrates some of the typical data rates for WAN services currently available.

Table 7-3. Selected WAN Data

 

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