Modelling a transport-level telecommunication management service of thermoelectric systems in agro-industrial complex based on Petri nets

O. Kuzichkin, V. Eremenko, G. Vasilyev, A. Eremenko, D. Surzhik, S. V. Eremenko
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引用次数: 1

Abstract

A promising direction for the organisation of cooling systems in the agro-industrial complex is thermoelectric complexes built on the basis of thermoelectric modules. When developing and operating them, it is necessary to provide precise adjustment and correction of the operating modes of all distributed parts of the thermoelectric system for maintaining the microclimate in real time. This task can be solved by distributed telecommunication control systems. Based on the apparatus of Petri nets, a model of transport-level service for telecommunication management of thermoelectric systems has been developed. The interface of the transport layer and the scheme of the transport service data conversion module, including procedures for converting socket library data formats, have been developed. This ensures the integrity of the description of processes for establishing connections between environment objects and data exchange, as well as the compatibility of private models corresponding to subsystems with different levels of service services. A scheme for dispatching messages circulating in an ad hoc environment has been developed, which operates on the principle of priority queue. This scheme allows to deliver urgent messages in the most efficient and cost-effective way.
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基于Petri网的农工综合体热电系统运输级电信管理服务建模
在农工业综合体中组织冷却系统的一个有前景的方向是基于热电模块建造的热电综合体。在开发和运行它们时,有必要对热电系统的所有分布式部件的运行模式进行精确的调整和校正,以实时维持小气候。这项任务可以通过分布式电信控制系统来解决。基于Petri网设备,建立了热电系统电信管理的传输级服务模型。已经开发了传输层的接口和传输服务数据转换模块的方案,包括转换套接字库数据格式的过程。这确保了在环境对象和数据交换之间建立连接的过程描述的完整性,以及与不同服务级别的子系统相对应的私有模型的兼容性。根据优先级队列的原理,提出了一种在自组织环境中调度消息的方案。该方案允许以最高效和最具成本效益的方式发送紧急消息。
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来源期刊
International Journal of Sustainable Agricultural Management and Informatics
International Journal of Sustainable Agricultural Management and Informatics Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.30
自引率
50.00%
发文量
23
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