Using Earth Observations to engender a social-ecological systems perspective on rural livelihoods and wellbeing.

Author(s):  
Peter Hargreaves ◽  
Gary Watmough

<p>An estimated 70% of the world’s poorest people live in rural spaces. There is a consistent differentiation between rural and urban contexts, where the former are typically characterised by weak infrastructure, limited services and social marginalisation. At the same time, the world’s poorest people are most vulnerable to global change impacts. Historic pathways to measuring and achieving poverty reduction must be adapted for an era of increasingly dynamic change, where spatio-temporal blind spots preclude a comprehensive understanding of poverty and its manifestation in rural developing contexts. To catalyse an effective poverty eradication narrative, we require a characterisation of the spatio-temporal anatomy of poverty metrics. To achieve this, researchers and practitioners must develop tools and mobilise data sources that enable the detection and visualisation of economic and social dimensions of rural spaces at finer temporal and spatial scales than is currently practised. This can only be realised by integrating new technologies and non-traditional sources of data alongside conventional data to engender a novel policy landscape.</p><p>Cue Earth Observation: the only medium through which data can be gathered that is global in its coverage but also available across multiple temporal and spatial scales. Earth Observation (EO) data (collected from satellite, airborne and in-situ remote sensors) have a demonstrable capacity to inform, update, situate and provide the necessary context to design evidence-based policy for sustainable development. This is particularly important for the Sustainable Development Goals (SDGs) because the nested indicators are based on data that can be visualised, and many have a definitive geospatial component, which can improve national statistics reporting.</p><p>In this review, we present a rubric for integrating EO and geospatial data into rural poverty analysis. This aims to provide a foundation from which researchers at the interface of social-ecological systems can unlock new capabilities for measuring economic, environmental and social conditions at the requisite scales and frequency for poverty reporting and also for broader livelihoods and development research.  We review satellite applications and explore the development of EO methodologies for investigating social-ecological conditions as indirect proxies of rural wellbeing. This is nested within the broader sustainable development agenda (in particular the SDGs) and aims to set out what our capabilities are and where research should be focused in the near-term. In short, elucidating to a broad audience what the integration of EO can achieve and how developing social-ecological metrics from EO data can improve evidence-based policymaking.</p><p><strong>Key words:</strong> Earth Observation; Poverty; Livelihoods; Sustainable Development Goals; Remote Sensing</p>

2019 ◽  
Vol 11 (7) ◽  
pp. 1961 ◽  
Author(s):  
Olivera Kostoska ◽  
Ljupco Kocarev

Sustainable development is critical to ensure the future of humanity. Therefore, the assessment and governance of sustainability becomes a central challenge our society is facing. This paper provides a novel ICT framework for addressing sustainable development goals. It is characterized by both local and global considerations, in the context of economic, ecological, and social aspects of sustainable development. The framework consists of three modules: data module, sustainability module, and governance module. Data module integrates data from several sources, processes data, infers knowledge, and transforms data into understandable information and knowledge. The second module implements SDGs at the level of municipality/city, ensures ranking of locally transformed SDGs to arrange them in line with the values and needs of the local communities, and proposes an integrated approach in modeling the social-ecological systems. By implementing governance theories, the governance module permits an effective citizen engagement in governance of SDGs. The ICT framework addresses short-term and long-term SDGs and allows for the vertical and horizontal linkages among diverse stakeholders, as well as for their contributions to the nested rule structures employed at operational, collective, and constitutional levels. Thus, the framework we provide here ensures a paradigm shift in approaching SDGs for the advancement of our society.


Human Ecology ◽  
2020 ◽  
Vol 48 (5) ◽  
pp. 557-571
Author(s):  
Ulysses Paulino Albuquerque ◽  
David Ludwig ◽  
Ivanilda Soares Feitosa ◽  
Joelson Moreno Brito de Moura ◽  
Patrícia Muniz de Medeiros ◽  
...  

2020 ◽  
Author(s):  
Ulysses Albuquerque ◽  
David Ludwig ◽  
Ivanilda Feitosa ◽  
Joelson Moura ◽  
Patricia Medeiros ◽  
...  

Author(s):  
Bruce Mitchell

In this chapter, the characteristics of a vision for a region, organization, or group are discussed, and then attention turns to examining the roles of forecasting and backcasting, and scenarios to anticipate the future. Subsequently, the characteristics of both sustainable development and resilience as possible visions to guide resource and environmental management are examined. In the context of sustainable development, the distinction between weak and strong sustainability is reviewed. Next, attention turns to the implications of the Anthropocene for achieving sustainable development and resilience. The concept of the rule of hand is explored, which suggests that normally not more than three to five variables are significant when trying to understand complex social-ecological systems, followed by consideration of how both adaptation and transformation can become strategies to address complexity and uncertainty. Kathryn Bellette provides a guest statement focused on implementing a strategy for sustainable development in metropolitan Adelaide, Australia.


Author(s):  
Dustin Eirdosh ◽  
Susan Hanisch

Evolutionary Studies (EvoS) examines the emergence and persistence of complex adaptive systems, including human social-ecological systems. Education for Sustainable Development (ESD) aims to empower students with the skills to develop and sustain human social-ecological systems that reflect the shared values of our species. The aims of EvoS and ESD have clear overlaps, and yet these two fields remain as distant islands of thought with few academic bridges between them. This chapter explores the connections between EvoS and ESD from historical, theoretical, and applied perspectives and presents the value of an integrated approach. The authors argue the strengths of this approach include its cumulative evidence base from wide-ranging disciplines, its explanatory power, and its overall simplicity.


2019 ◽  
Vol 2 ◽  
Author(s):  
Vanessa A. Masterson ◽  
Susanne Vetter ◽  
Tomas Chaigneau ◽  
Tim M. Daw ◽  
Odirilwe Selomane ◽  
...  

Non-technical summaryWe argue that the ways in which we as humans derive well-being from nature – for example by harvesting firewood, selling fish or enjoying natural beauty – feed back into how we behave towards the environment. This feedback is mediated by institutions (rules, regulations) and by individual capacities to act. Understanding these relationships can guide better interventions for sustainably improving well-being and alleviating poverty. However, more attention needs to be paid to how experience-related benefits from nature influence attitudes and actions towards the environment, and how these relationships can be reflected in more environmentally sustainable development projects.


2020 ◽  
Vol 12 (9) ◽  
pp. 1391 ◽  
Author(s):  
Wenzhao Li ◽  
Hesham El-Askary ◽  
Venkat Lakshmi ◽  
Thomas Piechota ◽  
Daniele Struppa

In September 2015, the members of United Nations adopted the 2030 Agenda for Sustainable Development with universal applicability of 17 Sustainable Development Goals (SDGs) and 169 targets. The SDGs are consequential for the development of the countries in the Nile watershed, which are affected by water scarcity and experiencing rapid urbanization associated with population growth. Earth Observation (EO) has become an important tool to monitor the progress and implementation of specific SDG targets through its wide accessibility and global coverage. In addition, the advancement of algorithms and tools deployed in cloud computing platforms provide an equal opportunity to use EO for developing countries with limited technological capacity. This study applies EO and cloud computing in support of the SDG 6 “clean water and sanitation” and SDG 11 “sustainable cities and communities” in the seven Nile watershed countries through investigations of EO data related to indicators of water stress (Indicator 6.4.2) and urbanization and living conditions (Indicators 11.3.1 and 11.1.1), respectively. Multiple approaches including harmonic, time series and correlational analysis are used to assess and evaluate these indicators. In addition, a contemporary deep-learning classifier, fully convolution neural networks (FCNN), was trained to classify the percentage of impervious surface areas. The results show the spatial and temporal water recharge pattern among different regions in the Nile watershed, as well as the urbanization in selected cities of the region. It is noted that the classifier trained from the developed countries (i.e., the United States) is effective in identifying modern communities yet limited in monitoring rural and slum regions.


2019 ◽  
Vol 245 ◽  
pp. 471-480 ◽  
Author(s):  
Zahra Kalantari ◽  
Carla Sofia Santos Ferreira ◽  
Jessica Page ◽  
Romain Goldenberg ◽  
Jonas Olsson ◽  
...  

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