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Design of Energy-saving Optimized Remote Control System of Chiller Based on Improved Particle Swarm Optimization

机译:基于改进粒子群算法的冷水机组节能优化远程控制系统设计

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The traditional chiller system in pharmaceutical plants is facing many problems. Such as low water energy and power utilization, serious energy consumption problems. Manual detection of water chiller parameters has low efficiency and low accuracy. Water chiller failures occur frequently. relying solely on manual detection to find the fault is not timely, can not be real-time remote monitoring and control of water chiller. In order to solve these problems, this paper proposes the design of a chiller energy-saving optimization remote control system based on an improved particle swarm optimization (PSO) algorithm. First of all, this paper builds a hardware detection and remote monitoring control system to detect various parameters of the chiller system. Through the TCP protocol and the MODBUS protocol for data interaction, the collected data can be transmitted to the upper computer in real time. Not only can the webcam monitor real-time monitoring of chiller changes, but it can also detect chiller failures timely. The use of remote monitoring and early warning devices enables the system to have the ability to monitor and control chiller systems in real time. Secondly, a mathematical model is established based on the parameters of the chiller being detected, and the improved PSO algorithm is optimized. Finally, data analysis is performed to achieve optimal energy-saving control. Through the analysis of pharmaceutical factory data, we can draw a conclusion that the system we design not only has good use value, but also has a very broad development prospects.
机译:制药厂的传统冷却器系统面临许多问题。如水能和电力利用率低,能源消耗严重问题。手动检测冷水机组参数效率低,精度低。冷水机故障经常发生。单纯依靠人工检测发现故障是不及时的,不能对冷水机组进行实时的远程监控。为了解决这些问题,本文提出了一种基于改进粒子群算法的冷却器节能优化远程控制系统设计。首先,本文构建了硬件检测和远程监控系统,以检测冷却器系统的各种参数。通过TCP协议和MODBUS协议进行数据交互,可以将收集的数据实时传输到上位机。网络摄像头不仅可以监控冷却器变化的实时监控,还可以及时发现冷却器故障。使用远程监视和预警设备使系统能够实时监视和控制冷却器系统。其次,根据检测到的冷水机参数建立数学模型,并对改进的PSO算法进行优化。最后,进行数据分析以实现最佳的节能控制。通过对制药厂数据的分析,可以得出结论:所设计的系统不仅具有良好的使用价值,而且具有非常广阔的发展前景。

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