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beamform_primer
1
A Primer on Digital Beamforming
Toby Haynes, Spectrum Signal Processing
March 26, 1998
Introduction
Beamforming is the combination of radio signals from a set of small non-directional antennas to simulate a
large directional antenna. The simulated antenna can be pointed electronically, although the antenna does
not physically move. In communications, beamforming is used to point an antenna at the signal source to
reduce interference and improve communication quality. In direction finding applications, beamforming can
be used to steer an antenna to determine the direction of the signal source.
This introduction to beamforming covers the basic properties of antennas and antenna arrays, then explains
how beamformers are built using digital radio hardware and DSP’s. Super-resolution direction finding is
also explained.
Antennas and Wavelength
An antenna for a radio transmitter converts electrical signals on a cable, from the transmitter, into
electromagnetic waves. The antenna consists of electrical conductors (wires, pipes, reflecting surfaces, etc)
that create electric and magnetic fields in the space around them. If the fields are changing, they propagate
outward through space as an electromagnetic wave at the speed of light.
Speed of Light c = 3x10
8
meters/sec
Any antenna that transmits can also receive. Passing electromagnetic waves excite currents in the antenna’s
conductors. The antenna captures some energy from passing waves and converts it to an electrical signal on
the cable.
When designing an antenna, its dimensions are specified in terms of the wavelength of the radio signal
being transmitted or received. Wavelength is the distance from the beginning of one electromagnetic wave
cycle to the next.
λ = c / fc
λ is wavelength in meters
fc is the carrier frequency of the radio signal in Hz
c is the speed of light (3x10
8
meters/sec)
Wavel
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