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High-reliability composite power supply system applied to Mars landing patrol task

A power supply system and task technology, applied in the field of deep space exploration, can solve the problems of being unsuitable for interplanetary exploration requirements of high-reliability composite power supply missions, unsuitable for power supply of the two compartments of Mars probes, unsuitable for mixed use or multiplexing, etc., to achieve relief The effect of wide range of weight and temperature adaptation and low self-discharge rate

Pending Publication Date: 2022-01-04
BEIJING INST OF SPACECRAFT SYST ENG
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Problems solved by technology

[0002] Multi-chamber combined spacecraft has been widely used in the fields of lunar exploration and manned spaceflight. The patent "A Combined Power Supply System and Method for Double-cabin Combined Spacecraft" provides a design of a dual-cabin combined spacecraft power supply system. method, but the traditional equipment is used for the single machine of the system, and the power supply mode of the two cabins is similar, and the optimized design is only made in the link of module reuse.
[0003] At the same time, traditional spacecraft often use zinc-silver batteries for short-term one-time missions. However, for Mars probes and interplanetary exploration missions, the power supply unit faces problems such as long-term storage and wide temperature range use, so it is necessary to choose suitable for long-term storage. The single-unit power supply that can increase the energy efficiency of the system, zinc-silver batteries for short-term power supply are no longer applicable; secondly, if different types of battery packs are used for long-duration missions and short-duration missions of traditional multi-cabin spacecraft, most of them are independent power supply, which is not suitable for mixed use Or reuse; however, the mission of the two modules of the Mars rover is relatively independent, but there is a mission requirement for a combination of long-term and short-term power supply, the existing power supply mode is not suitable for the power supply of the two modules of the Mars rover; finally, When the detector is facing high-risk and highly complex EDL (entry, descent, landing) stage, human intervention cannot be performed, and the reliability, fault identification and isolation of the two-cabin power supply system become particularly important; in summary, the traditional power supply topology It is no longer suitable for the interplanetary exploration needs of high-reliability composite power supply missions

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  • High-reliability composite power supply system applied to Mars landing patrol task
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  • High-reliability composite power supply system applied to Mars landing patrol task

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Embodiment Construction

[0035] In order to enable those skilled in the art to better understand the solutions of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application.

[0036] In order to increase the reliability of the power supply system and improve the energy efficiency ratio in combination with the mission requirements of the Mars rover, the present invention provides a highly reliable composite power supply system applied to the Mars landing patrol mission, which is installed on the Mars rover, and the Mars The probe includes an orbiter and a landing patrol. The landing patrol includes an entry module and a Mars rover. The composite power supply system includes an entry module power supply subsystem, a Mars rover power supply subsystem, a main power supply path, a backup power supply path, and a charging path. Among them, the power...

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Abstract

According to the high-reliability composite power supply system applied to the Mars landing patrol task provided by the invention, a high-specific-energy primary battery with the characteristics of low self-discharge rate, no maintenance, wide temperature adaptation range and the like is selected for an entering cabin power supply subsystem only needing short-time power supply, so that a charging path entering a cabin is saved, and the weight of the whole power supply system is reduced; for a Mars rover power supply subsystem needing long-time power supply, a rechargeable battery is selected, and the purposes of adapting to long-time storage and wide-temperature-range detection tasks and realizing power supply path multiplexing backup at the most critical EDL section are achieved by adopting different types of energy storage batteries and corresponding topological design. In other words, the backup power supply path can independently complete the EDL task and can match the main power supply path to complete the EDL task, and the system reliability is improved; therefore, the invention is particularly suitable for detectors which need to be subjected to long-term flight, can be stored for a long time, have relatively independent cabin tasks and have multiplexing requirements, such as Mars detection tasks and interplanetary detection tasks.

Description

technical field [0001] The invention belongs to the technical field of deep space exploration, and in particular relates to a highly reliable composite power supply system applied to Mars landing patrol missions. Background technique [0002] Multi-chamber combined spacecraft has been widely used in the fields of lunar exploration and manned spaceflight. The patent "A Combined Power Supply System and Method for Double-cabin Combined Spacecraft" provides a design of a dual-cabin combined spacecraft power supply system. method, but the traditional equipment is used for the single machine of the system, and the power supply mode of the two cabins is similar, and the optimized design is only made in the module multiplexing and other links. [0003] At the same time, traditional spacecraft often use zinc-silver batteries for short-term one-time missions. However, for Mars probes and interplanetary exploration missions, the power supply unit faces problems such as long-term storag...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64G1/42B64G1/44B64G1/10B64G1/66H02J7/00H02J7/35
CPCB64G1/428B64G1/425B64G1/443B64G1/105B64G1/66H02J7/0063H02J7/35B64G1/1071
Inventor 陈燕石海平刘治钢张晓峰杨东汪静穆浩
Owner BEIJING INST OF SPACECRAFT SYST ENG
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