Is Digital Good for Providing Water Security? – A Case Study of India

L. Iyer, Sirish Venkatagiri
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Abstract

We live in an urbanizing world. Large cities with population greater than 750,000 would represent US$21.8 trillion in economic activity or 47.7% global GDP. These cities are already home to 1.7 billion people, about 24% of the world’s population. By the year 2050, it is expected that ninety percent of the world’s urban population growth will occur in Asia and Africa. Economic growth goes hand-in-hand with the urban growth. With the population increase in cities, there is a need for ample and consistent supply of water. The supply of water is a fundamental component of the environmental, economic and social health of cities. There is a huge investment of US$90 billion a year in water supply infrastructure to ensure delivery of clean water to the citizens. If the current trend continues, the volume of urban water need will have to go up by 80% by the year 2030. In this context, The World Economic Forum classified water security as one of the greatest threats to global prosperity in the year 2014. Hence, it becomes essential to manage the water resources in an efficient manner to cater to a large population. The world around us is transformed by various technologies and adopted by humans. Improvement in the performance and cost of computing power, storage and bandwidth are the causes of these technologies. Fourth Industrial Revolution technologies like Virtual & Augmented Reality, Big Data Analytics, Radio Frequency Identification (RFID) and Block Chain have created disruption in various industries through the way businesses are run. India as a country has an advantage of monetising digital technologies for solutions related to social issues due to STEM qualified expertise and experience. AI4SG has got the potential to provide the most sought after Water Security for a country like India. The current study attempts to identify whether there is a dearth in the supply of water due to lack of rain or excess exploitation; or is it that the resources are available but the management of water resources is not efficient. State-wise analysis across India is conducted to identify the gap. The measure used for this study is the Composite Water Quality Index devised by Niti Aayog. The study has found that the gap between supply and demand of this significant resource can be bridged with the proven technology of Block Chain. Issue of Water loss, Water trading and Water quality could be resolved using Block Chain technology. The most common areas of improvement in Water management across various States of India are Water supply, Ground water restoration/rejuvenation, Participatory Irrigation, On-farm use, and Waste water treatment. Block Chain as a technology solution is proposed to bring in possible resolution to these issues to improve upon the water management process.
数字技术对水安全有益吗?——以印度为例
我们生活在一个城市化的世界。人口超过75万的大城市将代表21.8万亿美元的经济活动,占全球GDP的47.7%。这些城市已经拥有17亿人口,约占世界人口的24%。到2050年,预计全球90%的城市人口增长将发生在亚洲和非洲。经济增长与城市发展是相辅相成的。随着城市人口的增加,需要有充足和持续的水供应。供水是城市环境、经济和社会健康的一个基本组成部分。每年在供水基础设施方面的巨额投资达900亿美元,以确保向市民提供清洁用水。如果目前的趋势继续下去,到2030年,城市需水量将不得不增加80%。在此背景下,世界经济论坛将水安全列为2014年全球繁荣的最大威胁之一。因此,必须以有效的方式管理水资源,以满足大量人口的需求。我们周围的世界被各种技术所改变,并被人类所采用。计算能力、存储和带宽的性能和成本的提高是这些技术发展的原因。第四次工业革命的技术,如虚拟和增强现实、大数据分析、射频识别(RFID)和区块链,通过企业的运营方式,在各个行业都产生了颠覆性的影响。由于STEM合格的专业知识和经验,印度作为一个国家在将数字技术货币化以解决与社会问题相关的解决方案方面具有优势。AI4SG有潜力为印度这样的国家提供最受追捧的水安全。目前的研究试图确定是否由于缺乏雨水或过度开发而导致供水短缺;或者是资源是可用的,但水资源的管理效率不高。在印度各地进行了各邦分析,以确定差距。本研究使用的测量方法是Niti Aayog设计的综合水质指数。研究发现,这一重要资源的供需差距可以通过区块链的成熟技术来弥合。水损失、水交易和水质问题可以通过区块链技术来解决。印度各邦在水管理方面最常见的改进领域是供水、地下水恢复/再生、参与式灌溉、农场使用和废水处理。区块链作为一种技术解决方案,被提议为这些问题提供可能的解决方案,以改善水管理过程。
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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