DEVELOPMENT OF MICROPROCESSOR-BASED SHUNTING SIGNAL CONTROL MODULES FOR RAILWAY AUTOMATION AND TELEMECHANICS SYSTEMS AND THEORETICAL INVESTIGATION OF THEIR FAILURE MODELS
Abstract
The rapid development of microprocessor technologies is creating new opportunities for the modernization of railway automation and telemechanics systems. At the same time, the gradual modernization of existing relay-based systems, rather than their complete replacement, is considered a more economically viable approach. This paper presents the development of a microprocessor-based alternative to the technical equipment used for controlling shunting signals in railway automation and telemechanics systems, with the aim of improving their performance, and provides an analysis of its reliability characteristics. In particular, the development and implementation of microprocessor-based shunting signal control modules enhance control accuracy, enable rapid fault detection, expand system monitoring capabilities, and reduce operation and maintenance costs.
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