Paper
31 August 2018 Internal polyhedron configuration energy self-sufficient system for sphere mobile platform
Hongbo Lu, Xinyi Li, Wei Zhang, Shuhong Hu, Ning Dai, Ziqing Qian, Ge Li
Author Affiliations +
Proceedings Volume 10835, Global Intelligence Industry Conference (GIIC 2018); 108351P (2018) https://doi.org/10.1117/12.2505647
Event: Global Intelligent Industry Conference 2018, 2018, Beijing, China
Abstract
Under the requirements of flexible, stealthy and miniaturize, the energy system has become the most critical factor that constraint the performance of smart unmanned equipment. Due to its advantages of convenient movement and strong environmental adaptability, the sphere platform shows broad prospects in military and civilian application. This paper designed an energy self-sufficient sphere platform equipped with intelligence reconnaissance device. The energy module of the device consists of an inscribed polyhedron solar cell array. The high power density energy storage component inside the sphere realizes energy storage and power supply for the signal transmission module. The sphere is equipped with an autonomous mobile unit and a detection unit, activated by outside trigger signal, and can be used in close reconnaissance, short-range detection and strategic destruction. The output power of the prototype machine produced by 3D printing is close to the theoretical result, and it maintained in high value during device rotation, laying the technical foundation for the practical application of this spherical platform.
© (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Hongbo Lu, Xinyi Li, Wei Zhang, Shuhong Hu, Ning Dai, Ziqing Qian, and Ge Li "Internal polyhedron configuration energy self-sufficient system for sphere mobile platform", Proc. SPIE 10835, Global Intelligence Industry Conference (GIIC 2018), 108351P (31 August 2018); https://doi.org/10.1117/12.2505647
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KEYWORDS
Solar cells

Optical spheres

Solar energy

Reconnaissance

Signal detection

Absorption

Signal processing

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