An optimal cable layout method considering maintenance accessibility for aviation equipment

B. Qiu, C. Lv, Zhiyi He, J. Geng, Chunhui Guo
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引用次数: 1

Abstract

Cable layout is an important part in the design of aviation equipment. Most of the cables are set within the narrow space of fuselage, the electrical environment and the spatial structure are complex, however, the traditional design process mainly focus on the physical properties of the cable itself without taking the maintainability especially the accessibility into consideration. In order to solve this problem, we first put forwards a cable layout design optimization model by converting basic constraints to weights of points in space through taking pretreatment (layering, rasterizing, digitalizing) in wiring space and confirming quantitative constraint conditions of accessibility based on visual cone volume of maintenance point and collisionless space volume. Then in the solving of the model, an improved A * algorithm is adopted and an optimized path of the cable is figured out. We use DELMIA to carry out 3D modeling to achieve the cable layout design and optimized the layout result based on its accessibility analysis module. In the end, we make a case study on cable layout optimization of an equipment compartment and verify the feasibility of the method, at the same time, propose a new and practicable optimization method for the design work of cable layout for aviation equipment.
考虑航空设备维修可及性的电缆优化布放方法
电缆布放是航空设备设计的重要组成部分。电缆大多设置在机身狭窄的空间内,电气环境和空间结构复杂,传统的设计过程主要关注电缆本身的物理性能,而没有考虑可维护性特别是可及性。为了解决这一问题,首先通过对布线空间进行预处理(分层、栅格化、数字化),并基于维持点视锥体体积和无碰撞空间体积确定可达性的定量约束条件,将基本约束转化为空间中点的权重,提出了一种电缆布放设计优化模型。然后在求解模型时,采用改进的A *算法,求出了缆索的优化路径。利用DELMIA进行三维建模,实现电缆布放设计,并基于其可达性分析模块对布放结果进行优化。最后以某设备舱室电缆布放优化为例,验证了该方法的可行性,同时为航空设备电缆布放设计工作提出了一种新的、切实可行的优化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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