太阳能水泵系统的成本与可行性分析

Papia Ray, S. Nayak, Arvind P. Singh, Barsha Rani Pradhan
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引用次数: 0

摘要

提出并分析了一种经济可行且高效的偏远缺水地区太阳能抽水系统的解决方案,该方案是基于模糊逻辑的高效最大功率点跟踪(MPPT)控制器与减少转炉级的使用相结合。此外,这里使用无刷直流(BLDC)电机进行高效抽水,因为它没有感应电机的激励损失。本文提出的系统由单级电压源逆变器组成,采用电池备用的方式实现不间断流,并以MPPT控制器的输出占空作为输入之一进行控制。因此,采用基于matlab的模型对系统的性能进行了分析,并对所提出模型的经济可行性进行了分析。我们提出的模型的成本是使用Homer软件估算的,然后将其与其他研究人员提出的使用直流电机和DC-DC转换器的模型的成本进行比较。仿真结果表明,与其他模型相比,该模型的成本要低得多,仅为60万卢比。因此,无论天气如何,所提出的模型都具有成本效益和效率,使居住在偏远地区的人们方便易用,从而帮助解决最大的水危机问题。
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Cost and Feasibility Analysis of a Solar-Powered Water Pumping System
A solution of an economically viable and efficient solar-powered water pumping system in remote water-scarce areas is proposed and analyzed which is based on the reduced use of converter stages in combination with efficient maximum power point tracking (MPPT) controller based on fuzzy logic. Further, Brushless DC (BLDC) motor is used here for efficient water pumping as it is free of excitation loss as in case of an induction motor. The proposed system consisting of a single-stage voltage source inverter uses battery backup for uninterrupted flow which is also controlled by taking MPPT controller output duty as one of the inputs. Consequently, a MATLAB-based model is used to analyze the system’s performance and economic feasibility of the proposed model is also analyzed. The cost of our proposed model was estimated using Homer software, and it was then compared to the cost of the model which uses a DC motor and DC-DC converter proposed by other researchers. It was found from the simulation results that the proposed model costs much lesser i.e., 6 lakhs as compared to other models. Thus, the proposed model is cost effective and efficient regardless of the weather, making it convenient and user-friendly for those who live in remote places and thereby providing help to solve the biggest problem of water crises.
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