利用不同的暖通空调运行模式来提高制药行业的需求响应灵活性,并通过HOMER软件进行经济分析以进行优化

Ankush Gupta, Sathans Suhag
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引用次数: 0

摘要

在制药行业(PMI)中,大部分能源消耗在暖通空调(HVAC)系统中,因此建筑能源管理系统(BEMS)主要侧重于优化暖通空调系统的能源消耗。阐述了暖通空调的两种运行模式,功能模式(FM)和非功能模式(NFM),以及它们在提高能源需求灵活性方面的作用。并从经济角度对两种模式进行了多电可再生能源混合优化(HOMER)软件分析。在净现值成本(NPC)和能源成本(COE)约束下,暖通空调的FM/NFM优于FM。本文对几种需求响应(DR)联盟进行了比较评估,以提供不同pmi的DR联盟适用性的综合图像。此外,本文还探讨了控制算法形式的创新概念,并讨论了相关的挑战和未来的机遇。此外,可再生能源系统(RESs)在PMI或其他行业的经济中增强能源管理(EM)灵活性的使用通过DR联盟得到了强调。本综述研究可能有助于PMI管理能源需求,并将DR作为EM的一个重要方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of distinct HVAC operation modes to improve demand response flexibility in the pharmaceutical industry and economic analysis for optimization by HOMER software
In the pharmaceutical industry (PMI), the major portion of energy is consumed in heat ventilation air conditioning (HVAC) system, therefore building energy management systems (BEMS) primarily focus on optimizing the energy consumption in HVAC systems. The two operation modes of HVAC, function mode (FM) and non-function mode (NFM), is descriptively explained with their role in improving the flexibility of demanded energy. Both modes are also exposed with hybrid optimization of multiple electric renewables (HOMER) software analysis from an economic perspective. Concerning net present cost (NPC) and cost of energy (COE) constraints, the FM/NFM of HVAC is preferable to the FM. This paper recognizes a comparative evaluation of several demand response (DR) alliances to deliver a comprehensive image of the suitability of DR alliances for different PMIs. Further, the paper also explores an innovative concept in the form of a control algorithm and discussion the relevant challenges and future opportunities. Moreover, the use of renewable energy systems (RESs) for enhancing energy management (EM) flexibility with the economy in the PMI or other industries is emphasized through DR alliances. This review study could be helpful to the PMI in terms of managing energy demand and also incorporating DR as an essential aspect of EM.
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