The technology of a condition based maintenance of an overhead contact line with Markov approximation of contact wire wear

K. Pereverzyev, V. Vasenko, G. Domanska
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Abstract

The technologies of OCL condition based maintenance were improved for providing reliable and economic current collecting on electrified railways and in traction power networks of urban electric transport. It is established that one of the most perspective methods of reducing operating costs is the transition to scientifically justified terms of repair and planning of works based on the actual state of OCL, the reliability of which is determined by the reliability, repair suitability and durability of the elements. The basic criteria of the current collecting process are proposed: the value of contacting pair wear, the detachment of the current collectors from the wires, the scope of oscillations of pantograph head and the contact pressure, coefficients of contact unreliability and cost savings of collecting a power from catenary, and, finally, a minimum of annual operating costs. Technology of maintenance according to Markov type parameter control is developed. Models of controlling actions on stagger and the contact wire gradient adjustment processes are developed. The standard linear programming algorithm was used to solve the problem. The application of such technology to determine the matrix of controlling actions based on the results of monitoring the stagger and the contact wire gradient is shown. The factors that determine the cost of staying in a state of stagger have been identified. The controlling actions matrices on the stagger and the contact wire gradient and the cost of staying in these gradient states are established. The technology of service with Markov approximation of wear of contact wires is offered. It has been investigated that the contact wires, primarily due to wear, are degraded during operation. Degradation processes cause gradual failures. The first group of failures: breakages, burnouts, local wear - require controlling actions to incut the insertion or putting into operation a shunt. The second group: a burnout, a decrease in the average cross-section of a wire less than the allowable one requires controlling actions to replace the wire of the entire tension length. After conducting the first type of controlling actions, the contact wire returns to the working state with the previous value of the determining parameter. When performing a second type of controlling actions, the defining parameter returns to its original state. If the quantification step is chosen such that the intensities of failures and transitions from one state to another with a sufficient degree of accuracy were constant, then the graph of states and transitions, as well as the Kolmogorov differential equations, can be used for the research. The readiness function, the density of time distribution of infallible operation, the total failure rate, and the average recovery rate from state S0i to Si are determined. Thus, all reliability indicators are defined and it is possible to use them in determining the condition of the contact wire of the tension length. Experience has shown that the most effective diagnostics of the condition of OCL devices combines the assessment of the state on mathematical, simulation models and measurements with the use of car laboratories for testing the contact network and devices for monitoring the parameters of the contact wire for the railcar. Key words –overhead contact line,contact wire, mainanance technology, controlling action models.
基于接触线磨损马尔可夫近似的架空接触线状态维修技术
改进了OCL状态维修技术,为电气化铁路和城市电力运输牵引电网提供可靠、经济的集流。根据OCL的实际状态,向科学合理的维修条款和工程规划过渡是降低运营成本的最有前景的方法之一,其可靠性由元件的可靠性、维修适用性和耐久性决定。提出了电流收集过程的基本标准:接触副磨损值、集流器与导线的分离程度、受电弓头的振荡范围和接触压力、接触不可靠性系数和从接触网收集电力的成本节约,最后是最低的年运行成本。开发了基于马尔可夫型参数控制的维修技术。建立了对错开控制作用和接触丝梯度调整过程的模型。采用标准线性规划算法求解该问题。给出了该技术在控制动作矩阵确定中的应用,该控制动作矩阵是基于对错动和接触线梯度的监测结果。已经确定了决定处于错开状态的成本的因素。建立了对错开和接触丝梯度的控制作用矩阵,以及停留在这些梯度状态下的代价。提出了接触导线磨损的马尔可夫近似维修技术。据调查,接触导线主要是由于磨损,在操作过程中退化。退化过程导致逐渐失效。第一组故障:断裂、烧坏、局部磨损——需要控制动作来插入或投入运行分流器。第二组:烧坏,电线的平均横截面小于允许的横截面,需要控制动作来替换整个张力长度的电线。在执行第一种控制动作后,接触线返回到工作状态,具有先前的决定参数值。当执行第二种类型的控制操作时,定义参数返回到其原始状态。如果选择量化步骤,使故障强度和从一种状态到另一种状态的转换具有足够的精度,则可以使用状态和转换图以及Kolmogorov微分方程进行研究。确定了从状态S0i到状态si0的准备函数、无差错运行的时间分布密度、总故障率和平均恢复率。这样,就定义了所有的可靠性指标,并可以用它们来确定接触丝的张力长度的状况。经验表明,最有效的OCL设备状态诊断结合了数学,仿真模型和测量的状态评估与使用汽车实验室测试接触网络和设备监测接触线的参数为轨道车辆。关键词:架空接触线,接触线,维护技术,控制动作模型。
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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