Determination of Diagnostic Parameters of Power Plants Based on Internal Combustion Engines

S. Zaichenko, Ümran Erçetin, R. Kulish, D. Derevyanko, V. Shalenko
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引用次数: 1

Abstract

Abstract The presented article shows a method for finding monitored parameters for creating a diagnostic system for autonomous power sources based on spark ignition engines and diesel engines. The classification of structures of autonomous power sources based on internal combustion engines has been carried out. The analysis of the design features of the most common back-up power sources on the market based on internal combustion engines (ICE) indicates the widespread use of generators with a synchronous alternator. The analysis of the design features of autonomous power supplies has made it possible to develop logical models for different designs. The influence of the occurrence of a faulty state of each element on other elements of the systems is analyzed, and the results of the analysis are summarized in tables. An informative Claude Chenon criterion is proposed for finding the optimal number of diagnostic parameters among an infinite number of possible combinations of physical parameters that characterize the system. When solving the problem, a hypothesis was proposed about the equiprobability of cases of exit from the working state of each of the elements of the system. The use of Claude Chenon allows you to find the parts that make up the generators, which with maximum efficiency reduce the degree of uncertainty in the system. After determining the residual entropy, the parts of the system are selected, the state of which should be monitored by the diagnostic system. For such parts of the system, diagnostic parameters are found and methods for obtaining them are indicated.
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基于内燃机的电厂诊断参数的确定
摘要:本文介绍了一种基于火花点火发动机和柴油发动机的自动动力源诊断系统的监测参数查找方法。对基于内燃机的自主动力源结构进行了分类。分析了市场上最常见的基于内燃机的备用电源的设计特点,表明了同步交流发电机的广泛应用。通过对自主电源设计特点的分析,可以建立不同设计的逻辑模型。分析了每个元件故障状态的发生对系统其他元件的影响,并将分析结果汇总在表格中。提出了一种信息丰富的Claude Chenon准则,用于在表征系统的无数可能的物理参数组合中找到最优数量的诊断参数。在求解该问题时,提出了系统各要素退出工作状态的等概率假设。使用Claude Chenon可以让您找到组成发电机的部件,从而最大限度地降低系统中的不确定性。残差熵确定后,选择诊断系统需要监测的系统部件。对于系统的这些部分,找到了诊断参数,并指出了获得诊断参数的方法。
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