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Development of Pogo Pin-Based Holding and Release Mechanism for Deployable Solar Panel of CubeSat

机译:基于Pog PIN的搭扣和释放机制的覆盖太阳能电池板的开发

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CubeSats are revolutionary to the space industry and are transforming space exploration which enables the next generation of scientists and engineers to complete all phases of space missions. Deployable solar panels have been widely used for the generation of enough power in CubeSats due to their limited volume area for solar cell integration. In general, the cable cutting release mechanism have been used in 1U-3U small satellites because of its simplicity and low cost. However, this mechanism has a low constraint force and is unable to apply constraints along the in-plane and out-of-plane directions. In this study, for the improvement of the conventional cable cutting mechanism, a spring-loaded pogo pin-based nichrome burn wire holding and release mechanism (HRM) was proposed and fabricated. The pogo pin constitutes an immensely attractive function for the holding and release mechanism of solar panels because it works as an electrical interface to provide power, a separation spring to initiate the reaction force to deploy the panels, and a status switch to determine deployments. In addition, the proposed mechanism guarantees the loading capability along the in-plane and out-of-plane directions of solar panels, the synchronous release of multiple panels, and a handling simplicity that differentiates it from the conventional mechanism. The design feasibility, structural safety, and reliability of the mechanism were verified through functionality tests and launch and on-orbit environmental tests. The proposed pogo pin-based holding and release mechanism would be equally applicable for other CubeSat deployable appendages.
机译:Cubeesats对航天工业革命性,正在转变太空探索,这使得下一代科学家和工程师能够完成所有阶段的太空任务。可展开的太阳能电池板已广泛用于在太阳能电池集成的有限容积区域的情况下产生足够的电力。通常,由于其简单性和低成本,电缆切割机构已在1U-3U小卫星中使用。然而,该机构具有低约束力并且不能沿着平面内和面外方向施加约束。在本研究中,为了改进传统的电缆切割机构,提出并制造了一种弹簧加载的Pogo销的基于烧伤线卷绕和释放机构(HRM)。 Pogo引脚构成了太阳能电池板的保持和释放机构的绝对吸引力的功能,因为它用作提供电源的电气接口,分离弹簧,以启动反作用力部署面板,以及确定部署的状态开关。此外,所提出的机制保证了沿着平面内和太阳能电池板的外平面方向的加载能力,多面板的同步释放,以及处理其与传统机制的处理简单性。通过功能测试和发射和轨道环境测试来验证机制的设计可行性,结构安全性和可靠性。所提出的Pogo PIN的保持和释放机制同样适用于其他CubeSat可部署的附件。

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