DEFINITION OF COMMUNICATION
• Two-way process of reaching mutual understanding,
  in which participants not only exchange (encode-
  decode)information, news, ideas and feelings but
  also create and share meaning.
• In general, communication is a means of connecting
  people or places.
• In business, it is a key function of management-
  an     organization   cannot    operate    without
  communication between levels, departments and
  employees.
COMMUNICATION
                   WIRELESS
• Wireless is a term used to describe
  telecommunications in which electromagnetic
  waves (rather than some form of wire) carry the
  signal over part or all of the communication path.
There are two fundamental aspects of
      wireless communication
• First is the phenomenon of fading: the time-variation of
  the channel strengths due to the small-scale effect of
  multipath fading, as well as larger scale effects such as
  path loss via distance attenuation and shadowing by
  obstacles.
• Second, unlike in the wired world where each
  transmitter-receiver pair can often be thought of as an
  isolated point-to-point link, wireless users communicate
  over the air and there is significant interference
  between them in wireless communication
HISTORY OF WIRELESS COMMUNICATION
• Electro Magnetic (EM) waves
  – 1678 Huygens work on the phenomena of light reflection
    and refraction
  – 1819 Fresnel demonstrates the wavelike nature of light
  – 1831 Faraday demonstrates electromagnetic induction
  – 1864 J. Maxwell introduces the theory of electromagnetic
    fields, wave equations
  – 1886 H. Hertz demonstrates experimentally the
    transmission and detection of an EM wave between two
    points a few meters apart
  – 1896 Marconi recognized that longer waves propagate
    over larger distances and demonstrates a communication
    set-up over 3km
HISTORY OF WIRELESS COMMUNICATION
•   1898 - 1901 - Guglielmo Marconi
     – first demonstration of wireless
       telegraphy (Morse code - digital!)
     – long wave transmission over longer distances (transatlantic) at an operating frequency of
       1MHz
•   1906 - 1st World Admin. Radio Conf. (WARC -> WRC)
     – increasing popularity of radio systems and their extended use
     – ability to define BW using filters led to spectrum control
     – recommendations for the assignment of RF bands
•   1907 - Commercial transatlantic connections
     – huge base stations
       (30 by 100m high antennas)
•   1915 - Wireless voice transmission N.Y. - San Francisco
•   1920 - Discovery of short waves by Marconi
     – reflection at the ionosphere
     – smaller sender and receiver -> due to the invention of the vacuum tube (1906 - Lee DeForest
       and Robert von Lieben)
HISTORY OF WIRELESS COMMUNICATION
• 1933 - Frequency modulation (E. H. Armstrong)
• 1946 - Mobile Telephone Service (MTS) in US
   – introduced in 1946, it allowed telephone calls between fixed stations
     and mobile sers
   – one single powerful transmitter/receiver (base station) provided
     coverage of up to 50km
   – based on FM technology, each voice channel of 3kHz used 120KHz of
     spectrum, and only half duplex service was available
   – blocking probabilities were as high as 65% (only 12 simultaneous calls
     could be handled!)
• 1958 - A-Netz in Germany at 160MHz
   – analog cellular, connection setup only from the mobile station, no
     handover, 80% coverage, 1971 only 11000 customers
• 1972 - B-Netz in Germany at 160MHz
   – connection setup from the fixed network (location of the mobile
     station had to be known)
HISTORY OF WIRELESS COMMUNICATION
• Two major technological improvements made the cellular concept a
  reality:
    – the microprocessor -> allowed for complex algorithms to be
      implemented, and
    – digital control links between base station and mobile unit -> allowed
      for increased control of the system so more sophisticated services
      could be made available:
        • hand-overs
        • digital signaling
        • automatic location of mobile device
•   1979 - Analog Mobile Phone System (AMPS) in US
•   1979 - NMT at 450MHz in Scandinavian countries
•   1985 - France’s Radiocom 2000
•   1985 - UK’s TACS
•   1986 - C-Netz in Germany at 450MHz
HISTORY OF WIRELESS COMMUNICATION
•   1991 - Specification of DECT
     – Digital European Cordless Telephone (today: Digital Enhanced Cordless
       Telecommunications)
     – 1880-1900MHz, ~100-500m range, 120 duplex channels, 1.2Mbit/s data transmission,
       voice encryption, authentication, up to several 10000 user/km2, used in more than 40
       countries
•   1992 - Start of GSM
     –   fully digital, 900MHz, 124 channels
     –   automatic location, hand-over, cellular
     –   roaming initially in Europe - now worldwide in more than 100 countries
     –   services: data with 9.6kbit/s, FAX, voice, ...
•   Early 90’s - IS 54, IS 136, IS 95 in US in same spectrum as AMPS
     – IS 54 is a TDMA digital standard that uses the old AMPS system for transmission.
     – IS 136 is the new TDMA standard and
     – IS 95 is the CDMA based standard. All 4 systems are in operation in the US!
•   1994 - GSM at 1800MHz (called Digital Cellular Service (DCS1800))
     – smaller cells, supported by 11 countries
HISTORY OF WIRELESS COMMUNICATION
•   1996 - HiperLAN (High Performance Radio Local Area Network)
     – ETSI, standardization of type 1: 5.15 - 5.30GHz, 23.5Mbit/s
     – recommendations for type 2 and 3 (both 5GHz) and 4 (17GHz) as wireless ATM-
       networks (up to 155Mbit/s)
•   1997 - Wireless LANs
     – many products with proprietary extensions out there already
     – IEEE-Standard, 2.4 - 2.5GHz, 2Mbit/s
•   1998 - Specification of GSM successors
     – UMTS (Universal Mobile Telecommunication System) as the European proposal for IMT-
       2000
•   1998 - Specification for next generation CDMA starts
     –   Qualcomm starts work on wideband CDMA spec.
•   1999 - Specification of IEEE802.11b
     – increased BW to 11Mbit/s
•   2000 - Bluetooth Specification
     – 1Mbit/s specification, single cell
     – Work on 10Mbit/s spec. with multi cell capability initiated
BENEFITS OF WIRELESS COMMUNICATION
 1. Flexibility
 2. Ease of use
 3. Planning
 4.Place devices
 5. Durability
 6.Prices
        PROBLEMS IN WIRELESS
          COMMUNICATION
• Compatibility issues
• Wireless networks the weakest in terms of
  privacy protection
BLOCK DIAGRAM OF WIRELESS
  COMMUNICATION SYSTEM