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Technical Efficiency of Irrigated and Rain-Fed Smallholder Agriculture in Tigray, Ethiopia: A Comparative Stochastic Frontier Production Function Analysis

机译:埃塞俄比亚提格里的灌溉和雨育小农农业技术效率:比较随机前沿生产函数分析

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摘要

Stochastic production frontiers of irrigated and rain-fed smallholder agriculture in Tigray, Ethiopia, were fitted to a random sample of irrigated and rain-fed plots to compare their technical efficiencies. Propensity Score Matching Method was appliedto select rain-fed plots with comparable bio-physical attributes to irrigated plots that might have blurred the true efficiency differences between the two systems. Irrigated farms are on a higher production frontier with significant inefficiencies, while rain-fed farms are on a lower production frontier with high efficiency levels. Thus, there is considerable potential for increasing outputs by improving the efficiency of irrigation farms. Rain-fed systems need interventions in soil moisture management to move to a higher production frontier. The study underlines the need for correcting the sequence and mix of yield boosting technologies such as irrigation, improved seeds, and fertilizer that are promoted in arid environments such as Tigray. We recommend that water control must precede or implemented in tandem with improved seeds and fertilizer technologies. Unless soil moisture is improved by investing in moisture improving technologies, the use of seed and fertilizer in moisture stressed areas such as Tigray may have adverse effects.
机译:将埃塞俄比亚提格雷的灌溉和雨养小农农业的随机生产边界与灌溉和雨养地的随机样本进行拟合,以比较其技术效率。倾向得分匹配法被用于选择具有类似生物物理属性的雨养地块与灌溉地块,这可能使两个系统之间的真实效率差异变得模糊。灌溉农场的效率较高,生产边界较高,而雨养农场的效率较低,生产边界较低。因此,通过提高灌溉农场的效率来增加产量具有很大的潜力。雨养系统需要对土壤水分管理进行干预,才能迈向更高的生产前沿。该研究强调需要纠正在干旱环境(如提格雷)中推广的增产技术(例如灌溉,改良种子和肥料)的顺序和混合。我们建议水控制必须在改良种子和肥料技术之前或同时实施。除非通过投资水分改良技术来改善土壤水分,否则在Tigray等水分紧张地区使用种子和肥料可能会产生不利影响。

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