备用电力系统人-纳米网(H2N)模型的可行性分析

M. S. Alam, Y. Rafat, Ibrahim Alsaidan, S. Shariff, M. I. Khan, Furkan Ahmad
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引用次数: 0

摘要

分布式发电方式减少了输电和配电的复杂性,具有离散的优点。本文提出了一种基于分布式发电技术的人-纳米电网(H2N)模型,将在不同的健身器材上锻炼时浪费的人体能量利用并存储到一组超级电容器中。健身俱乐部的目标器械是根据可以举起的最大负荷以及可以在其上进行的特定肌肉群锻炼来选择的,例如卧推和拉下器械。研究一台机器在一段时间内由不同的用户产生的机械能,并将人力输出与健身房的能源消耗进行比较,以找出每月和每年的电费变化。最后,利用收集到的数据进行节能减排分析,并进行盈亏平衡分析,以确定投资回收期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility Analysis of Human to Nanogrid (H2N) Model for Backup Power System
The distributed mode of generation reduces the complications related to transmission and distribution which has its discrete advantages. This paper proposes a model of Human to Nanogrid (H2N) that is based on the distributed generation technology to harness and store the human energy wasted during a workout on different gym equipment into a bank of supercapacitors. Targeted machines at the health club are selected based on the maximum load that can be lifted and also based on specific muscle group exercise that can be performed on them, such as bench press and Lat pulldown machine. Mechanical energy generated from a machine by different users over a period is studied and a comparison between the human power output and the energy consumption at the gym is carried out to find the change in monthly and yearly electricity bill. Finally, the collected data is utilized to analyze the energy savings, emission reduction and also the break-even analysis is performed to determine the payback period.
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