METHOD OF EVALUATION THE EFFICIENCY OF FIBER-OPTIC CABLES MODELS WITH MULTI-MODULAR DESIGN BASED ON MASS AND DIMENSIONAL INDICATORS

O. V. Bondarenko, D. M. Stepanov, O. O. Verbytskyi, S. V. Siden
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Abstract

Context. Today, the leading cable production plants in many countries of the world manufacture single- and multi-module designs of fiber-optic cables (FOC) with different protective covers and the number of fibers. This creates a wide range of possible FOC models for different consumer (buyer) requirements. However, the lack of openness of prices for FOC for the consumer, in particular for the project organization, and the desire of the manufacturer to save on production creates a need for the development and research of a method for evaluating the effectiveness of FOC of a multi-module design. In the work, it is proposed to do this by analyzing a number of optical cable models according to parameters-criteria – the compactness coefficient and the economic efficiency coefficient of the FOC by diameter. Objective. To develop a method of evaluation the efficiency of fiber-optic cables models with multi-modular design based on mass-dimensional indicators, which will allow to quickly choose an appropriate model of the FOC with the given initial data. Method. A method of evaluating the efficiency of the FOC modular design has been developed and proposed. It is based on the comparison of cable models and the selection of the most appropriate of them at given initial data. The paper proposed and introduced parameters-criteria for this – the compactness coefficient υ and the efficiency coefficient according to the diameter of the cable E0 – which show the connection of the design characteristics of the FOC to a certain parameter of its structure. At the same time, the most effective model (design) of the FOC compared to the basic models in terms of technical conditions, both from the point of view of the manufacturer and the customer, consists in lower material costs for its production while simultaneously ensuring the specified requirements for the cable (first of all, number of fibers and mechanical strength). This will allow, at the stage of cable design, to make an appropriate choice of its model with given initial parameters and to develop such a design of the FOC, which will allow to minimize the dimensions (and therefore the material capacity and cost) of the model without losing its quantitative and qualitative characteristics. Results. The paper presents the results of the development and research of the method of evaluating the efficiency of the FOC with multi-module structure based on mass and dimensional indicators. For example, using the developed method, it is shown that it is possible to choose a FOC model with a diameter smaller by 10.9% and save 15.5% of the cable cost for each kilometer of the fiber optic communication line while ensuring the initial requirements for the cable. Conclusions. The scientific novelty of the work results is that, method of evaluation the efficiency of a modular FOC design has been first developed, which allows at the cable design stage to compare the model with the cable design according to the technical conditions (TC) and the appropriate choice of this model with the given initial parameters. The practical significance lies in the possibility of using this method to make an accelerated selection of the cable model at the stage of its design, while simultaneously providing the necessary capacity of the FOC with optical fibers and minimizing the cost of its materials and dimensions.
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基于质量和尺寸指标的多模块设计光缆模型效率评估方法
背景。如今,世界上许多国家的主要光缆生产厂都在生产单模块和多模块设计的光缆(FOC),其保护层和光纤数量各不相同。这就为不同的消费者(买方)需求提供了多种可能的 FOC 型号。然而,由于消费者,特别是项目组织方对 FOC 的价格不公开,而制造商又希望节省生产成本,因此需要开发和研究一种方法,用于评估多模块设计 FOC 的有效性。在这项工作中,建议根据参数标准--紧凑系数和按直径计算的 FOC 经济效益系数--来分析一些光缆模型。开发一种基于质量-尺寸指标的多模块设计光缆模型效率评估方法,以便根据给定的初始数据快速选择合适的 FOC 模型。我们开发并提出了一种评估 FOC 模块化设计效率的方法。该方法的基础是对电缆模型进行比较,并根据给定的初始数据选择最合适的模型。论文为此提出并引入了参数标准--紧凑系数 υ 和根据电缆直径 E0 确定的效率系数--它们显示了 FOC 的设计特性与其结构的特定参数之间的联系。同时,从制造商和客户的角度来看,就技术条件而言,与基本型号相比,最有效的 FOC 型号(设计)包括降低其生产材料成本,同时确保电缆的特定要求(首先是纤维数量和机械强度)。这样,在电缆设计阶段,就可以根据给定的初始参数对模型做出适当的选择,并开发 FOC 设计,从而在不损失其定量和定性特征的情况下,最大限度地减小模型的尺寸(从而减小材料容量和成本)。本文介绍了基于质量和尺寸指标的多模块结构 FOC 效率评估方法的开发和研究成果。例如,使用开发的方法表明,在确保光缆初始要求的前提下,可以选择直径小 10.9%的 FOC 型号,并为每公里光纤通信线路节省 15.5%的光缆成本。工作成果的科学新颖性在于,首次开发了评估模块化 FOC 设计效率的方法,该方法允许在光缆设计阶段根据技术条件(TC)将模型与光缆设计进行比较,并根据给定的初始参数适当选择该模型。其实际意义在于,使用这种方法可以在光缆设计阶段加速选择光缆模型,同时提供必要的光纤 FOC 容量,并最大限度地降低材料和尺寸成本。
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