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Pulsar time synchronous device with high reliability

A technology of time synchronization device and pulsar, applied in the field of time synchronization device and high reliability pulsar time synchronization device

Inactive Publication Date: 2014-06-04
XI AN JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] At present, the time synchronization technology based on X-ray pulsars is still in its infancy, and there is no mature technical solution in China. Aiming at this problem, the present invention designs a time synchronization device based on pulsars. The periodic pulse signal detected by the detector corrects the space-borne rubidium atom, so that the space-borne atomic clock maintains a high accuracy

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  • Pulsar time synchronous device with high reliability
  • Pulsar time synchronous device with high reliability

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Embodiment Construction

[0015] The present invention is described in further detail below in conjunction with accompanying drawing:

[0016] see figure 1 , the high-reliability pulsar time synchronization device of the present invention includes an X-ray detector 1, a signal conditioning device 2, a first rubidium atomic clock 3, a second rubidium atomic clock 4, a third rubidium atomic clock 5 fault diagnosis module 6, and a switch 7. Frequency divider 8, time interval measurement module 9, CPU10; the first, second and third rubidium atomic clocks 3, 4 and 5 are respectively connected to the fault diagnosis module 6, and the fault diagnosis module 6 is connected to the CPU10; the first, second and third The rubidium atomic clocks 3, 4, and 5 are also connected to the switch 7, one of which is connected to the frequency divider 8, and the other leads to provide standard frequency signals for other spaceborne equipment; the frequency divider 8 is connected to the time interval measurement module 9 An...

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Abstract

The invention discloses a pulsar time synchronous device with high reliability, which includes an x-ray detector, a signal conditioner, a first rubidium atomic clock, a second rubidium atomic clock, a third rubidium atomic clock, a failure diagnosis module, a change-over switch, frequency dividers, time interval measurement modules and a CPU, wherein the first, the second and the third rubidium atomic clocks are connected with the failure diagnosis module, and are connected with the change-over switch respectively; the failure diagnosis module includes the frequency dividers in three groups and the time interval measurement modules, and is connected with the CPU; one way of the change-over switch is connected with the frequency dividers, and the other way of the change-over switch serves as the frequency standard of other spaceborne equipment; each frequency divider is connected one input end of each time interval measurement module; the x-ray detector is connected with the signal conditioner; the signal conditioner is connected with the other input end of each time interval measurement module; the time interval measurement modules are connected to the CPU; and the CPU is connected with the change-over switch as well as the first, the second and the third rubidium atomic clocks. The device has the advantages of high accuracy and reliability, is endowed with the failure autodiagnosis function, and greatly improves the automatic navigation capability.

Description

technical field [0001] The invention belongs to the technical field of time synchronization, and relates to a time synchronization device, in particular to a highly reliable pulsar time synchronization device. Background technique [0002] A pulsar is a neutron star with high-speed rotation, its rotation period is stable, and it is not damaged by human interference, so it is a natural time reference source. Pulsars have good visibility far away from the solar system and cover a wide range. They are used in various low-earth orbits, medium-high orbits and deep space exploration orbits. [0003] During the mission execution of autonomous navigation satellites, the satellite-borne atomic clocks will drift in frequency over time, and high-precision time and frequency signals are the prerequisite for high-precision orbit determination, so high-precision time synchronization devices are essential for autonomous navigation satellites. has a very important role. [0004] At presen...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G04R40/06G04R20/04
Inventor 孙剑郭鹏斌
Owner XI AN JIAOTONG UNIV
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