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Doppler radar



 
 
A doppler radar is a radar
Radar

Radar is a system that uses electromagnetic radiation waves to identify the range, altitude, direction, or speed of both moving and fixed objects such as aircraft, ships, motor vehicles, weather formations, and terrain....
 using the doppler effect
Doppler effect

The Doppler effect , named after Austrian physicist Christian Doppler who proposed it in 1842, is the change in frequency and wavelength of a wave for an observer moving relative to the source of the waves....
 of the returned echoes from targets to measure their radial velocity
Radial velocity

Radial velocity is the velocity of an object in the direction of the line of sight . The light of an object with a substantial radial velocity will be subject to Doppler effect, so the frequency of the light decreases for receding objects and increases for approaching objects ....
. To be more specific the microwave
Microwave

Microwaves are electromagnetic radiation with wavelengths ranging from 1 mm to 1 m, or frequency between 0.3 hertz and 300 GHz....
 signal sent by the radar antenna's directional beam is reflected toward the radar and compared in frequency, up or down from the original signal, allowing for the direct and highly accurate measurement of target velocity component in the direction of the beam.






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Doppler Effect Diagrammatic
A doppler radar is a radar
Radar

Radar is a system that uses electromagnetic radiation waves to identify the range, altitude, direction, or speed of both moving and fixed objects such as aircraft, ships, motor vehicles, weather formations, and terrain....
 using the doppler effect
Doppler effect

The Doppler effect , named after Austrian physicist Christian Doppler who proposed it in 1842, is the change in frequency and wavelength of a wave for an observer moving relative to the source of the waves....
 of the returned echoes from targets to measure their radial velocity
Radial velocity

Radial velocity is the velocity of an object in the direction of the line of sight . The light of an object with a substantial radial velocity will be subject to Doppler effect, so the frequency of the light decreases for receding objects and increases for approaching objects ....
. To be more specific the microwave
Microwave

Microwaves are electromagnetic radiation with wavelengths ranging from 1 mm to 1 m, or frequency between 0.3 hertz and 300 GHz....
 signal sent by the radar antenna's directional beam is reflected toward the radar and compared in frequency, up or down from the original signal, allowing for the direct and highly accurate measurement of target velocity component in the direction of the beam. Doppler radars are used in air defense, air traffic control
Air traffic control

Air traffic control is a service provided by ground-based Air traffic controller who direct aircraft on the ground and in the air. The primary purpose of ATC systems worldwide is to separate aircraft to prevent collisions, to organize and expedite the flow of traffic, and to provide information and other support for pilots when able....
, sounding satellites, police speed guns
Radar gun

A radar gun or speed gun is a small Doppler radar used to detect the speed of objects. A radar gun does not return information regarding the object's position or any information concerning the car e.g....
, and radiology
Radiology

Radiology is the branch or speciality of medicine that deals with the study and application of imaging technology like x-ray and radiation to diagnosing and treating disease....
.

Recent weather radar
Weather radar

A weather radar is a type of radar used to locate precipitation , calculate its motion, estimate its type , and weather forecasting its future position and intensity....
s process velocities of precipitations
Precipitation (meteorology)

File:MeanMonthlyP.gifIn meteorology, precipitation is any product of the condensation of Atmosphere water vapor that is deposited on the earth's surface....
 by Pulse-Doppler radar
Pulse-doppler radar

Pulse-Doppler is a radar system capable of not only detecting target location , but also measuring its radial velocity . It uses the Doppler effect to determine the relative velocity of objects; pulses of RF energy returning from the target are processed to measure the frequency shift between carrier cycles in each pulse and the original tra...
 technique, on top of their intensities
Reflectivity

In photometry and heat transfer, reflectivity is the fraction of incident radiation Reflection by a surface. In general it must be treated as a directional property that is a function of the reflected direction, the incident direction, and the incident wavelength....
. This is a slightly different treatment of Doppler data that has been publicized so much in the United States
United States

The United States of America is a Federal government constitutional republic comprising U.S. state and a federal district. The country is situated mostly in central North America, where its Contiguous United States and Washington, D.C., the Capital districts and territories, lie between the Pacific Ocean and Atlantic Oceans, Borders of the U...
 that the term Doppler radar is often wrongly used by the public to mean weather radar.

Christian Andreas Doppler


The phenomenon known as the Doppler Effect
Doppler effect

The Doppler effect , named after Austrian physicist Christian Doppler who proposed it in 1842, is the change in frequency and wavelength of a wave for an observer moving relative to the source of the waves....
 is named after Christian Andreas Doppler
Christian Doppler

Christian Andreas Doppler was an Austrian mathematician and physicist. He is most famous for what is now called the Doppler effect, which is the apparent change in frequency and wavelength of a wave as perceived by an observer moving relative to the wave's source....
. Doppler was an Austrian physicist who first described in 1842 how the observed frequency of light and sound waves was affected by the relative motion of the source and the detector.

This is most often demonstrated by the change in the sound wave of a passing train. The sound of the train whistle will become "higher" in pitch as it approaches and "lower" in pitch as it moves away. This is explained as follows: the number of sound waves reaching the ear in a given amount of time (this is called the frequency) determines the tone, or pitch, perceived. The tone remains the same as long as you and the train are not moving relative to each other. As the train moves closer to you the number of sound waves reaching your ear in a given amount of time increases. Thus, the pitch increases. As the train moves away from you the opposite happens.

Basic concept


A Doppler radar is a radar that produces a velocity
Velocity

In physics, velocity is defined as the Derivative of Position vector. It is a vector physical quantity; both speed and direction are required to define it....
 measurement as one of its outputs. Doppler radars may be Coherent Pulsed, Continuous Wave, or Frequency Modulated. A continuous wave (CW) doppler radar is a special case that only provides a velocity output. Early doppler radars were CW, and it quickly led to the development of Frequency Modulated (FM-CW) radar, which sweeps the transmitter frequency to encode and determine range. The CW and FM-CW radars can only process one target normally, which limits their use. With the advent of digital techniques Pulse-Doppler (PD) radars were introduced, and doppler processors for coherent pulse radars were developed at the same time.

The advantage of combining doppler processing to pulse radars is to provide accurate velocity information. This velocity is called Range-Rate. It describes the rate that a target moves towards or away from the radar. A target with no range-rate reflects a frequency near the transmitter frequency, and cannot be detected. The classic zero doppler target is one which is on a heading that is tangential to the radar antenna beam. Basically, any target that is heading 90 degrees in relation to the antenna beam cannot be detected by its velocity (only by its conventional reflectivity
Reflectivity

In photometry and heat transfer, reflectivity is the fraction of incident radiation Reflection by a surface. In general it must be treated as a directional property that is a function of the reflected direction, the incident direction, and the incident wavelength....
).

FM radar was highly developed during World War II
World War II

World War II, or the Second World War , was a global military conflict which involved a Participants in World War II, including all of the great powers, organised into two opposing military alliances: the Allies of World War II and the Axis powers....
 for the use by US Navy aircraft. Most used the UHF
Ultra high frequency

Ultra high frequency designates a range of Electromagnetic radiation waves with frequency between 300 megahertz and 3 gigahertz . Also known as the decimetre band or decimetre wave as the wavelengths range from ten to one decimetres....
 spectrum, and had a transmit yagi
Yagi antenna

A Yagi-Uda Antenna, commonly known simply as a Yagi antenna or Yagi, is a directional antenna system consisting of an array of a dipole antenna and additional closely coupled parasitic elements ....
 antenna
Antenna (radio)

An 'antenna' is a transducer designed to transmitter or receive Electromagnetic radiations. In other words, antennas convert electromagnetic waves into electrical currents and vice versa....
 on the port
Port (nautical)

Port is the List of nautical terms that refers to the left and right side of a ship, as perceived by a person on board the ship and facing towards the Bow ....
 wing, and a receiver yagi antenna on the starboard
Starboard

Starboard is the List of nautical terms that refers to the left and right side of a vessel as perceived by a person on board a vessel and facing the Bow ....
 wing. This allowed bomber
Bomber

A bomber is a military aircraft designed to attack ground and sea targets, primarily by dropping bombs on them....
s to fly an optimum speed when approaching ship targets. Later when magnetrons and microwave
Microwave

Microwaves are electromagnetic radiation with wavelengths ranging from 1 mm to 1 m, or frequency between 0.3 hertz and 300 GHz....
s became available, the use of FM radar fell into disuse.

When the Fast Fourier transform
Fast Fourier transform

A fast Fourier transform is an efficient algorithm to compute the discrete Fourier transform and its inverse. There are many distinct FFT algorithms involving a wide range of mathematics, from simple complex number to group theory and number theory; this article gives an overview of the available techniques and some of their general propert...
 became available digitally, it was immediately connected to Coherent Pulsed radars, where velocity information was extracted. This quickly proved useful in both weather and air traffic control
Air traffic control

Air traffic control is a service provided by ground-based Air traffic controller who direct aircraft on the ground and in the air. The primary purpose of ATC systems worldwide is to separate aircraft to prevent collisions, to organize and expedite the flow of traffic, and to provide information and other support for pilots when able....
 radars. The velocity information provided another input to the software tracker, and improved computer
Computer

A computer is a machine that manipulates Data according to a list of Code .The first devices that resemble modern computers date to the mid-20th century , although the computer concept and various machines similar to computers existed earlier....
 tracking. Due to the low pulse repetition frequency (PRF
Pulse repetition frequency

Pulse Repetition Frequency is the number of pulses transmitted per second by a radar. The reciprocal of this is called the Pulse Repetition Time , Pulse Repetition Interval , or Inter-Pulse Period , which is the elapsed time from the beginning of one pulse to the beginning of the next pulse....
) of most coherent pulsed radars, which maximizes the coverage in range, the amount of doppler processing is limited. The doppler processor can only process velocities up to ±1/2 the PRF of the radar. This was not a problem for weather radars.

Specialized radars quickly were mechanized when digital techniques became affordable. Pulse-Doppler radars combine all the benefits of long range, and high velocity capability. Pulse-Doppler radars use a medium to high PRF (on the order of 30 kHz). This high PRF allows for the detection of either high speed targets, or high resolution velocity measurements. Normally it is one or the other, that is, a radar designed for detecting targets from zero to Mach
Mach number

Mach number is the speed of an object moving through air, or any fluid substance, divided by the speed of sound as it is in that substance. It is commonly used to represent an object's speed, when it is travelling at the speed of sound....
 2, does not have a high resolution in speed, while a radar designed for high resolution velocity measurements does not have a wide range of speeds. Weather radars are high resolution velocity radars, while air defense radars have a large range of velocity detection, but the accuracy in velocity is in the 10's of knot
Knot (speed)

The knot is a unit of speed equal to one nautical mile per hour. Its kn abbreviation is preferred by American and Canadian maritime authorities, and by the Institute of Electrical and Electronics Engineers; however, the kt and kts abbreviations also are used....
s.

Antenna designs for the CW and FM-CW started out as separate transmit and receive antennas before the advent of affordable microwave designs. In the late 1960s traffic radars began being produced which used a single antenna. This was made possible by the use of circular polarization, and a multi-port waveguide section operating at X band. By the late 1970s this changed to linear polarization and the use of ferrite circulator
Circulator

A circulator is a passive electronic component with three or more ports in which the ports can be accessed in such a way that when a signal is fed into any port it is transferred to the next port only, the first port being counted as following the last in numeric order....
s at both X and K bands. PD radars operate at too high a PRF to use a Transmit-Receive gas filled switch, and most use solid-state devices to protect the receiver Low Noise Amplifier when the transmitter is fired.

Bibliography


  • David G. C. Luck, Frequency Modulated Radar, published by McGraw-Hill, New York
    New York

    The State of New York is a U.S. state in the Mid-Atlantic States and Northeastern United States regions of the United States and is the nation's List of U.S....
    , 1949, 466 pages.


See also


  • Radar
    Radar

    Radar is a system that uses electromagnetic radiation waves to identify the range, altitude, direction, or speed of both moving and fixed objects such as aircraft, ships, motor vehicles, weather formations, and terrain....
    • Continuous wave radar
    • Fm-cw radar
    • Weather radar
      Weather radar

      A weather radar is a type of radar used to locate precipitation , calculate its motion, estimate its type , and weather forecasting its future position and intensity....
      , including the Doppler weather radar
    • Pulse-Doppler radar
      Pulse-doppler radar

      Pulse-Doppler is a radar system capable of not only detecting target location , but also measuring its radial velocity . It uses the Doppler effect to determine the relative velocity of objects; pulses of RF energy returning from the target are processed to measure the frequency shift between carrier cycles in each pulse and the original tra...
    • Radar gun
      Radar gun

      A radar gun or speed gun is a small Doppler radar used to detect the speed of objects. A radar gun does not return information regarding the object's position or any information concerning the car e.g....


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