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Investigation of high performance split air conditioning system by using Hybrid PID controller

机译:使用混合PID控制器研究高性能分流空调系统

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Highlights?Hybrid PID algorithm to control condenser DC fan speed and water mist flow rate to enhance split A/C system performance and increase energy saving over range (35–57)?°C.?Energy saving and COP for improved A/C system increased by 46.63% and 109.1%, respectively, compared to conventional system at 57?°C ambient temperature.?Program for detecting gas leak, fan stop, and obstacles oppose air flow.?Controller is more compatible, economic, and efficient with hot weathers and electricity-demand.AbstractIn this paper, the performance improvement of a split air conditioning system has been experimentally investigated to be efficiently utilized in the hot and dry weathers. To examine these improvements, a hybrid proportional integral differential controller was designed and implemented. This controller depends upon dual Proportional Integral Deferential successive algorithms, starting with air conditioning fan variable speed algorithm and followed by water mist variable flow rate algorithm according to the ambient temperature. These algorithms were integrated with a PIC16F877A microcontroller. Both of the air and water flow rates were controlled via a pulse width modulation technique. The proposed controller provides an additional operating stability for the air conditioning system during the instantaneous variation of weather conditions. The results show that the integration of the proposed control system with the modified air conditioning system leads to increase the energy saving and improve the coefficient of performance over a wide range of ambient temperatures (35–57)?°C. It was found that the coefficient of performance for the improved system was increased by around 17.14% and 109.1% at ambient temperature 40?°C and 57?°C, respectively, and the energy saving was increased by about 20.67% and 46.63% at ambient temperatures 45?°C and 57?°C, respectively, compared to the conventional air conditioning system.]]>
机译:<![cdata [ 亮点 混合PID算法控制电容器直流风扇速度和水雾流速增强分裂A / C系统性能增加节能超过范围(35-57)?°C。 节能和COP用于改进的A / C系统分别增加46.63%和109.1%,与57℃的环境温度相比。 检测煤气泄漏,风扇停止和障碍物的程序E空气流量。 控制器更兼容,经济,高效,热的风雨和电力需求。 抽象 本文的性能提高了分流空调已经通过实验研究了系统,以便在炎热和干燥的风雨中有效地使用。为了检查这些改进,设计并实现了一种混合比例积分差分控制器。该控制器依赖于双比例积分卓越的连续算法,从空调风扇可变速度算法开始,然后根据环境温度跟踪水雾可变流量算法。这些算法与PIC16F877A微控制器集成。通过脉冲宽度调制技术控制空气和水流速率。所提出的控制器在天气条件的瞬时变化期间为空调系统提供了额外的操作稳定性。结果表明,建议控制系统与改进的空调系统的集成导致节能,并在宽范围的环境温度(35-57)°C上提高性能系数。发现改善系统的性能系数分别在40°C和57℃的环境温度下提高约17.14%和109.1%,节能增加约20.67%和46.63%与传统空调系统相比,环境温度分别为45?°C和57℃。 ]]>

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