Partitioned array and SADA matching optimizing method reducing pressure difference between rings

An optimization method and pressure difference technology, applied in the field of communication satellites, can solve the problems of increasing the risk and lack of power supply security, and achieve the effect of reducing the risk of power supply security

Active Publication Date: 2019-12-03
CHINA ACADEMY OF SPACE TECHNOLOGY
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At present, there is a lack of clear and unified rules for the matching relationship between solar wing arrays and SADA slip rings. Multiple 100V differential pressure gaps are easily formed between SADA power slip rings, and multiple 100V differential pressure gaps increase the risk of power supply safety.

Method used

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  • Partitioned array and SADA matching optimizing method reducing pressure difference between rings
  • Partitioned array and SADA matching optimizing method reducing pressure difference between rings
  • Partitioned array and SADA matching optimizing method reducing pressure difference between rings

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Embodiment Construction

[0026] An optimization method for sub-array and SADA matching to reduce the pressure difference between the rings, such as figure 1 ,Proceed as follows:

[0027] (1) Divide the north and south solar wings into arrays. According to the number of PCU shunt stages and the number of SADA slip ring power rings, the division of north and south solar wing arrays is completed, so that the number of north (south) solar wing arrays is equal to the number of north (south) SADA power rings, and avoids empty SADA power rings. ring, so that the total number of north-south solar arrays is equal to the total number of PCU shunt stages;

[0028] (2) Establish the corresponding relationship between the north and south solar wing arrays and the PCU shunt stages, so that the array number is equal to the shunt stage number, the north solar wing corresponds to the odd number shunt stages, the south sun wing corresponds to the even number shunt stages, and the shunt numbers are from the inner panel...

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Abstract

The invention discloses a partitioned array and SADA matching optimizing method reducing a pressure difference between rings and belongs to the technical field of communication satellites. The methodincludes the following steps that: south and north sun wing partitioned arrays are divided; the one-to-one correspondence relationship of the south and north sun wing partitioned arrays and a PCU shunt level are built; due to the one-to-one correspondence relationship of the south and north sun wing partitioned arrays and the PCU shunt level in step (2), the matching relationship between the southand north sun wing partitioned arrays and SADA power rings on a south and north sun wing sailboard driving mechanism is built, and the number of gaps in the SADA power rings is controlled to be minimum; and each gap is a potential difference, being not zero, between every two adjacent power rings, and therefore the number of 100 V pressure difference gaps of an SADA sliding ring is minimum, and the power supply safety risk caused by the pressure difference between the rings is lowered.

Description

technical field [0001] The invention relates to a sub-array and SADA matching optimization method for reducing pressure difference between rings, and belongs to the technical field of communication satellites. Background technique [0002] Each sub-array of the solar wing is connected to the shunt regulator (S3R) in the PCU through the SADA power slip ring, forming a one-to-one correspondence between the sub-array-SADA power slip ring-S3R. When the solar array works in the shunt state, the array is connected to the entire star ground, and the corresponding SADA power slip ring potential is 0V; when the solar array works in the power supply state, the array supplies power to the entire star load, and the corresponding SADA power The slip ring potential is 100V. When one of the two adjacent SADA power slip rings is at 0V potential and the other is at 100V potential, a potential difference of 100V will be formed between the rings. The 100V differential pressure gap has certain...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64G1/44G06F17/50
CPCB64G1/443Y02E60/00Y04S40/20
Inventor 李大正李峰李雅琳张文芳蒋硕张子亮王利然张璇孙世卓
Owner CHINA ACADEMY OF SPACE TECHNOLOGY
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