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Synthesis and optimization of modular deployable truss antenna reflector

机译:模块化可展开桁架天线反射器的综合与优化

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摘要

Purpose This paper aims to synthesize a modular deployable truss antenna with the lower degree of freedom (DOF) and larger folding ratio. Because of the advantages of this kind of new truss antenna, the modules that make up the antenna can be deployed together by the synchronous motor drivers instead of twist springs to realize the controllable deployment.Design/methodology/approach The closed-loop branch equivalence method is proposed to synthesize the single DOF module and the large deployable reflector. The complex mechanism can be equivalently replaced by a simpler mechanism based on screw theory. The motion pairs are synthesized and optimized to make the curved surface achieve to the maximum folding ratio when the modular parabolic truss antenna is folded.Findings The results show that the 3(3RR-3RRR)-3RRR-3RRR planar module is a single DOF mechanism. Additionally, the adjacent parts of every two modules are connected with universal joints to obtain the new truss antenna when the modules are networked.Practical implications The configuration of this new modular deployable truss antenna can be synthesized to design the structure, and the proposed method can be applied to other space multi-loop coupling mechanism and other spacecraft.Originality/value This paper presents an approach to synthesizing the motion pairs, as well as the DOF analysis. The results lay a foundation for the further analysis of the deployable control and dynamics of this kind of antenna. And the new modular truss antenna has a practical application in aerospace engineering.
机译:目的本文旨在合成具有较低自由度(DOF)和较大折叠比的模块化可展开桁架天线。由于这种新型桁架天线的优点,组成天线的模块可以通过同步电动机驱动器而不是扭簧来一起部署,以实现可控的部署。设计/方法/方法闭环等效分支方法提出了合成单个自由度模块和大型可展开反射器的建议。复杂的机制可以等效地由基于螺杆理论的简单机制替代。合成并优化了运动对,使折叠抛物线形桁架天线时曲面达到最大折叠率。结果表明,3(3RR-3RRR)-3RRR-3RRR平面模块是单一的自由度机构。另外,每两个模块的相邻部分都通过万向节连接,以便在模块联网时获得新的桁架天线。实际意义可以合成这种新型模块化可展开桁架天线的配置以设计结构,并且所提出的方法可以原始性/价值本文提出了一种合成运动对的方法以及自由度分析。该结果为进一步分析这种天线的可部署控制和动力学奠定了基础。新型模块化桁架天线在航空航天工程中具有实际应用。

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