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Smart Control System to Optimize Time of Use in a Solar-Assisted Air-Conditioning by Ejector for Residential Sector

机译:智能控制系统,优化在太阳能辅助空调中的使用时间为住宅扇区

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摘要

The present work provides a series of theoretical improvements of a control strategy in order to optimize the time of use of solar air-conditioning by an ejector distributed in multiple solar collectors of vacuum tubes for the residential sector, which will allow us to reduce carbon-dioxide emissions, costs and electrical energy consumption. In a solar ejector cooling system, the instability of the solar source of energy causes an operational conflict between the solar thermal system and ejector cooling cycle. A fuzzy control structure for the supervisory ejector cycle and multi-collector control system is developed: the first control is applied to control the mass flow of the generator and the evaporator for different cooling capacities (3, 3.5, 4, 4.5 and 5 kW) and set a temperature reference according to the operating conditions; the second is applied to keep a constant temperature power source that feeds the low-grade ejector cooling cycle using R134aas refrigerant. For the present work, the temperature of the generator oscillates between 65 °C and 90 °C, a condenser temperature of 30 °C and an evaporator temperature of 10 °C. For the purpose of optimization, there are different levels of performance for time of use: the Mode 0 (economic) gives a performance of 17.55 h, Mode 5 (maximum cooling power) 14.86 h and variable mode (variable mode of capacities) 16.25 h, on average. Simulations are done in MATLAB-Simulink applying fuzzy logic for a mathematical model of the thermal balance. They are compared with two different types of solar radiation: real radiation and disturbed radiation.
机译:本工作提供了一系列的控制策略的理论改进,以便优化在用于住宅扇区的真空管的多个太阳能管中的喷射器中使用的喷射器优化使用太阳能空调的时间,这将使我们能够减少碳 - 二氧化碳排放,成本和电能消耗。在太阳能喷射器冷却系统中,太阳能源的不稳定性导致太阳能热系统和喷射器冷却循环之间的操作冲突。开发了用于监控器循环和多收集控制系统的模糊控制结构:第一个控制应用于控制发电机的质量流量和蒸发器,用于不同的冷却能力(3,3.5,4,4.5和5 kW)并根据操作条件设置温度参考;第二种被应用于保持恒温电源,其使用R134AAS制冷剂馈送低级喷射器冷却循环。对于本作工作,发电机的温度振荡在65°C和90°C之间,冷凝器温度为30°C和10℃的蒸发器温度。出于优化的目的,使用时间的性能不同:模式0(经济)提供17.55小时,模式5(最大冷却功率)14.86 H和可变模式(可变容量模式)16.25小时, 一般。模拟在Matlab-Simulink应用于热平衡的数学模型的模糊逻辑。它们与两种不同类型的太阳辐射进行比较:真正的辐射和令人不安的辐射。

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