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Preliminary Hardware Design and Development of On-Board Data Handling for Pico-Satellite in National Space Agency

机译:国家空间局浅局卫星在船上数据处理的初步硬件设计与开发

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Malaysia had in the past sent two remote sensing satellites to orbit by collaborating with foreign space companies to build homegrown capacities for space technology development. At the educational institutions, a pico-satellite development program would be an ideal first step to establish such capacity as students could gain the experience and know-how through the complete cycle of designing, building and testing a satellite. As it is now, some of their overseas counterparts have already succeeded in running CubeSat programs due to strong support from kit manufacturers and their national space agencies. However, the cost to purchase such kits could be discouraging and National Space Agency (ANGKASA) recognises the needs to initiate some designs that could be used or referred to for further development or expansion. In this paper, a hardware design of On-Board Data Handling (OBDH) board using PIC Microcontroller is presented. OBDH is a main subsystem which controls all subsystems in the satellite. It provides a series of important services like command, telemetry, data communication, data acquisition, process, storage and management. The PIC Microcontroller made by Microchip Corporation is chosen as it is widely used by the industry and academia in Malaysia. The 16-bit PIC24 microcontroller has been recognized as a suitable part due to its performance, memory, peripherals, cost effective solutions as well as availability. The method used in designing the OBDH in this pico-satellite is first based on a main mission to investigate ionospheric effect on GPS signal transmission. Other considerations taken are that the parts used should be of commercial off the shelf product and having its own development board for ease of testing. The expected result would be the successful arrangement of all required parts in limited pico-satellite's size and the accomplishment in achieving the satellite's missions through simulation.
机译:马来西亚过去曾通过与国外航天公司合作,向外展示两颗遥感卫星来轨道,以建立本土技术开发的本土能力。在教育机构,微微卫星发展计划是建立这种能力的理想第一步,因为学生可以通过设计,建造和测试卫星的完整循环来获得经验和专业知识。正如现在,他们的一些海外同行已经成功地在套件制造商及其国家空间机构的强大支持,以便在运行CubeSat计划。但是,购买此类工具包的成本可能是令人沮丧的,国家空间机构(angkasa)认识到提起可以使用或提及进一步发展或扩张的某些设计的需求。本文介绍了使用PIC微控制器的板载数据处理(OBDH)板的硬件设计。 OBDH是一个主子系统,它控制卫星中的所有子系统。它提供了一系列重要的服务,如命令,遥测,数据通信,数据采集,流程,存储和管理。选择Microchip Corporation制造的PIC微控制器,因为它在马来西亚的行业和学术界广泛使用。由于其性能,内存,外设,具有成本效益的解决方案以及可用性,16位PIC24微控制器已被识别为合适的部分。在本微微卫星中设计OBDH的方法首先基于研究对GPS信号传输的电离层效应的主要任务。所采取的其他考虑因素是所用的部件应该是商业设备,并拥有自己的开发板,便于测试。预期的结果将是在有限的微微卫星大小的所有所需部分的成功安排,通过模拟实现卫星任务的成就。

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