Feasibility of Pairing a Low-Cost Positive Displacement Pump With Low-Energy Pressure Compensating Drip Irrigation Emitters for Smallholder Farms in Africa

Seiji Engelkemier, F. Grant, J. Landis, Carolyn Sheline, Hannah M. Varner, R. Zubajlo, J. Sokol, A. Winter
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引用次数: 1

Abstract

In low income countries, existing drip irrigation systems are cost prohibitive to many smallholder farmers. Companies are working to develop efficient, low-cost irrigation systems by using technologies such as positive displacement (PD) pumps and pressure compensating (PC) emitters. However, these two technologies have not been paired in an efficient and cost-effective manner. Here we describe a proof-of-concept pump control algorithm that demonstrates the feasibility of exploiting the physical relationship between the input electrical power to a PD pump and the hydraulic behavior of a system of PC emitters in order to determine the optimal pump operating point. The development and validation of this control algorithm was conducted in partnership with the Kenya-based irrigation company SunCulture. This control method is expected to reduce cost, improve system efficiency, and increase accessibility of irrigation systems to smallholder farmers.
非洲小农农场低成本容积泵与低能压力补偿滴灌装置配对的可行性
在低收入国家,现有的滴灌系统对许多小农来说成本过高。各公司都在努力开发高效、低成本的灌溉系统,采用容积泵(PD)和压力补偿(PC)发射器等技术。然而,这两种技术还没有以有效和经济的方式配对。在这里,我们描述了一种概念验证的泵控制算法,该算法证明了利用PD泵的输入功率与PC发射器系统的水力行为之间的物理关系来确定最佳泵工作点的可行性。该控制算法的开发和验证是与肯尼亚灌溉公司SunCulture合作进行的。这种控制方法有望降低成本,提高系统效率,并增加小农获得灌溉系统的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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