微电网智能太阳能消纳分析与控制的物联网创新

IF 2.1 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
V. Anantha Krishnan, A. Jeba Sheela, B. Muthuraj, U. Senthil Kumaran, T. V. Muni, Tirukoti Sudha Rani, Ramesh N. S. V. S. C. Sripada, Manzoor Hiu Siddique, Raja Raju
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引用次数: 2

摘要

太阳能消耗是一项系统研究,用于根据太阳能电池板的规范审查组织中的设施、服务和设备的设计。太阳能电池板能耗分析是一项在太阳能开发初期就应该做的工作。这样,在潜在的变化影响太阳能预算和时间表之前,可以突出显示这些变化。该模型利用太阳能光伏微电网提供了基于物联网的智能太阳能消耗分析与控制模型。提议的物联网设计必须满足产品和工艺要求。太阳能电池板能源应适当解决生产过程的重要方面。这应包括与产品质量和安全相关的风险。最后,必须通过设计将不可接受的风险降至最低。在太阳能消耗分析过程中,应评估可交付成果;客户应该预先检查提议的设计,并确定有问题的地方(如果有的话)。太阳能消耗分析揭示了用户需求和功能是否足以达到预期结果。同样,对于设计审查中发现的差异,也应采取纠正措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An IOT Innovation of Smart Solar Energy Consumption Analysis and Control in Micro Grid
Solar energy consumption is a systematic study used to review the design of facilities, services, and equipment in an organization against specifications of solar panel. The solar panel energy consumption analysis is a work that should be done at the beginning of a solar energy. This way, potential changes can be highlighted before they affect the solar energy budget and schedule. The proposed model provides the IOT-based smart solar energy consumption analysis and control model by using solar photovoltaic micro grid. The proposed IOT design must meet product and process requirements. The solar panel energy should properly address important aspects of production processes. This should include risks related to product quality and safety. Finally, unacceptable risks must be minimized by design. In the solar energy consumption analysis process, the deliverables should be evaluated; customers should precheck the proposed design and identify problematic areas, if any. Solar energy consumption analysis reveals whether user requirements and features are sufficient to achieve the desired outcome. Likewise, there should be corrective actions for discrepancies found in design reviews.
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来源期刊
CiteScore
6.00
自引率
3.10%
发文量
128
审稿时长
3.6 months
期刊介绍: International Journal of Photoenergy is a peer-reviewed, open access journal that publishes original research articles as well as review articles in all areas of photoenergy. The journal consolidates research activities in photochemistry and solar energy utilization into a single and unique forum for discussing and sharing knowledge. The journal covers the following topics and applications: - Photocatalysis - Photostability and Toxicity of Drugs and UV-Photoprotection - Solar Energy - Artificial Light Harvesting Systems - Photomedicine - Photo Nanosystems - Nano Tools for Solar Energy and Photochemistry - Solar Chemistry - Photochromism - Organic Light-Emitting Diodes - PV Systems - Nano Structured Solar Cells
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