Radar apparatus
US-9013347-B2 · Apr 21, 2015 · US
US9689979B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9689979-B2 |
| Application number | US-201314397477-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 1, 2013 |
| Priority date | Apr 27, 2012 |
| Publication date | Jun 27, 2017 |
| Grant date | Jun 27, 2017 |
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A radar apparatus using a pulse pair method to quickly measure a relative speed of an object. The radar apparatus includes: A data acquirer that acquires data relating to a pulse width, a repetition frequency, and a highest staggered ratio; A staggered pattern output unit that outputs a specific staggered pattern in which a total of phase changes within a sweep range of the target of the pulse pairing can be approximated to zero, wherein each phase change is caused by the pulse pairing on a target object at a constant speed due to a difference between an average transmission interval and a transmission interval between transmissions within the sweep range; And a setter that sets the transmission interval of a pulse signal by using the pulse width, the repetition frequency, the highest staggered ratio, and the specific staggered pattern.
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What is claimed is: 1. A pulse signal setting unit to be applied for a radar apparatus that performs pulse pairing on complex reception signals by calculating phase change amounts of transmitted pulse signals for every predetermined number of sweeps, each complex reception signal obtained from a reflection wave caused by a transmitted pulse signal and reflected on a target object, the pulse signal setting unit comprising: a setting module configured to set a plurality of set transmission timings and receive a plurality of reference transmission timings, wherein each set transmission timing is different, by a predetermined period of time, from a corresponding reference transmission timing having a predetermined repetition cycle, wherein a pulse signal is transmitted at each set transmission timing and each reference transmission timing, and wherein the setting module: sets the plurality of set transmission timings to cause the phase change amount of the pulse signal transmitted at each set transmission timing to be substantially the same as the phase change amount of the pulse signal transmitted at the corresponding reference transmission timing, for every predetermined number of sweeps; includes a staggered pattern output module configured to generate a specific staggered pattern to eliminate a phase error for every predetermined number of sweeps, the specific staggered pattern being a combination of the plurality of set transmission timings; and sets the plurality of set transmission timings based on the specific staggered pattern. 2. The pulse signal setting unit of claim 1 , wherein the staggered pattern output module generates the specific staggered pattern to cause a total value of the phase error for every predetermined number of sweeps to become substantially zero. 3. The pulse signal setting unit of claim 1 , wherein the staggered pattern output module outputs a specific staggered pattern in which an argument of a total value of exp(jφm) for every predetermined number of sweeps becomes substantially zero, “j” indicating an imaginary unit and φm indicating a difference between the phase change amount of a complex reception signal corresponding to an m-th set transmission timing (m is a natural number) and an average phase change amount of the complex reception signals in the predetermined number of sweeps. 4. The pulse signal setting unit of claim 2 , wherein the staggered pattern output module outputs a specific staggered pattern in which a total value of cubes of differences of respective transmission intervals between the set transmission timings from the predetermined repetition cycle becomes zero. 5. The pulse signal setting unit of claim 4 , wherein the staggered pattern output module outputs a specific staggered pattern formed by using a plurality of pairs of real positive and negative numbers, absolute values of the real positive and negative numbers of each pair are the same as each other. 6. The pulse signal setting unit of claim 1 , wherein the staggered pattern output module includes: a memory configured to store a plurality of specific staggered patterns; and a selecting module configured to select one of the plurality of specific staggered patterns stored in the memory. 7. The pulse signal setting unit of claim 1 , wherein the staggered pattern output module includes a pattern generating module configured to generate a transmission timing pattern meeting a condition of the specific staggered pattern, and the staggered pattern output module outputs a random staggered pattern based on the transmission timing pattern generated by the pattern generating module. 8. A radar apparatus, comprising: a transception device configured to output complex reception signals obtained from reflection waves caused by transmitted pulse signals and reflected on a target object; and a signal processing device including the pulse signal setting unit of claim 1 configured to set the pulse signals transmitted by the transception device, and configured to perform pulse pairing on the complex reception signals outputted by the transception device and estimate a relative speed of the target object. 9. A method of setting pulse signals, to be applied for a radar apparatus that performs pulse pairing on complex reception signals by calculating phase change amounts of transmitted pulse signals for every predetermined number of sweeps, each complex reception signal obtained from a reflection wave caused by a transmitted pulse signal and reflected on a target object, the method comprising: setting a plurality of set transmission timings and receive a plurality of reference transmission timings, wherein each set transmission timing is different, by a predetermined period of time, from a corresponding reference transmission timing having a predetermined repetition cycle, wherein a pulse signal is transmitted at each set transmission timing and each reference transmission timing, and wherein the setting the plurality of set transmission timings includes: setting the plurality of set transmission timings to cause the phase change amount of the pulse signal transmitted at each set transmission timing to be substantially the same as the phase change amount of the pulse signal transmitted at the corresponding reference transmission timing for every predetermined number of sweeps; generating a specific staggered pattern to eliminate a phase error for every predetermined number of sweeps, the specific staggered pattern being a combination of the plurality of set transmission timings; and setting the plurality of set transmission timings based on the specific staggered pattern. 10. A pulse signal setting unit to be applied for a radar apparatus that performs pulse pairing on complex reception signals for every predetermined number of sweeps, each complex reception signal obtained from a reflection wave caused by a transmitted pulse signal and reflected on a target object, the pulse signal setting unit comprising: a setting module configured to receive a reference transmission timing having a predetermined repetition cycle and set a plurality of set transmission timings, each set transmission timing different from the reference transmission timing by a predetermined period of time, wherein the setting module includes a staggered pattern output module configured to generate a specific staggered pattern to eliminate a phase error for every predetermined number of sweeps, the specific staggered pattern being a combination of the plurality of set transmission timings, wherein the setting module sets the plurality of set transmission timings based on the specific staggered pattern, wherein a pulse signal is transmitted at each set transmission timing and each reference transmission timing, and wherein the predetermined period of time is a period of time with which a phase change amount of the pulse signal transmitted at each set transmission timing in the predetermined number of sweeps is substantially the same as a phase change amount of the pulse signal transmitted at the corresponding reference transmission timing in the predetermined number of sweeps. 11. The pulse signal setting unit of claim 10 , wherein the staggered pattern output module generates the specific staggered pattern to cause a total value of the phase error for every predetermined number of sweeps to become substantially zero. 12. The pulse signal setting unit of claim 10 , wherein the staggered pattern output module outputs a specific staggered pattern in which an argument of a total value of exp(jφm) for every predetermined number of sweeps becomes substantially zero, “j” indicating an imaginary unit and φm indicatin
wherein the transmitter and receiver are mounted on the moving object, e.g. for determining ground speed, drift angle, ground track (G01S13/64 takes precedence) · CPC title
Interference mitigation, e.g. reducing or avoiding non-intentional interference with other HF-transmitters, base station transmitters for mobile communication or other radar systems, e.g. using electro-magnetic interference [EMI] reduction techniques (auxiliary means for detecting or identifying radar signals or the like G01S7/021; means for anti-jamming G01S7/36) · CPC title
using irregular pulse repetition frequency {(G01S13/12 takes precedence)} · CPC title
using transmission of interrupted pulse modulated waves and based upon the Doppler effect resulting from movement of targets · CPC title
Details of pulse systems · CPC title
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