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A comprehensive review of energy-efficiency of ventilation system using Artificial Intelligence

机译:人工智能通风系统能源效率综述

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Energy utilization throughout the world is expanding at an alarming rate. This has just demonstrated its effect on the consumption of fuel resources and natural concerns (a drastic atmospheric deviation and debilitating of the O-3 layer). Positively, this heightening propensity of energy inadequacy will get disturbed later on. Effectiveness upgrade activities are viewed as the necessary arrangement in decreasing energy usage and ultimately opposing the worldwide natural effects of the all-out world energy produced, ventilation system, particularly the axial fans, burn-through about 20%. Hence, the essential focus on worldwide energy policy-makers is to upgrade energy effectiveness in the ventilation system. According to the studies, striking energy investment funds can be refined by controlling the ventilation system speed utilizing VFDs. Therefore, studies and investigations center principally around VFD control strategies to improve the ventilation system effectiveness. This article gave state-of-the-artwork on the ventilation system and VSD that reduces the ventilation system's overall energy consumption. Various energy efficiency strategies, selection of various components, and intelligent flow prediction techniques are represented in this article. Finally, the prospect encounters of AI-based models employed in the environmental area are discussed and proposed.
机译:全世界能源利用以惊人的速度扩展。这刚刚对燃料资源的消费和自然问题(O-3层的巨大大气偏差和衰弱)作出了影响。积极的是,这种加剧能量的能量不足会受到后来受到干扰。有效性升级活动被视为降低能源使用情况的必要安排,并最终反对全球世界能源生产,通风系统,特别是轴流风扇的全球自然影响,烧坏约20%。因此,对全球能源政策制定者的要重点是升级通风系统中的能量效率。根据研究,通过控制利用VFDS的通风系统速度,可以改进引人注目的能源投资基金。因此,研究和调查中心主要围绕VFD控制策略来提高通风系统的效果。本文对通风系统和VSD提供了最先进的作品,降低了通风系统的整体能源消耗。本文在本文中表示各种能效策略,选择各种组件和智能流量预测技术。最后,讨论并提出了在环境区域中使用的基于AI的模型的前景遇到。

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