Balancing risk and opportunity - an electricity infrastructure manager's perspective

Author(s):  
D. Openshaw
Author(s):  
Zdenek Dvorak ◽  
Nikola Chovancikova ◽  
Jozef Bruk ◽  
Martin Hromada

The quality of the environment as well as public health is convincingly coupled with the functioning of a power subsector. The power subsector plays a pivotal role in the sense that it emerges as the key cross-sectional element for the society’s functioning (production, services, healthcare, education and others). A modern society consists of infrastructure systems that are primarily dependent on continuous electricity supplies. Each and every element of the electric power infrastructure is unique, and thus, its malfunction can disrupt the functioning of an important part of the electric power infrastructure. In conjunction with ensuring the functioning of electric power infrastructure, our attention must be drawn to the resilience issue. As far as the resilience of electric power infrastructure is concerned, it can resist weather-related events ensuring there are no disruptions in continuous electricity supplies. First, in the introductory part, the article presents the legal framework in the Slovak Republic. Second, it describes the current state of the electric power infrastructure of Slovakia. Third, it handles the state of the level of security risk assessment. Later on, in the literature review, besides turning to the issue of resilience assessment, the authors focused on the area of resilience of power engineering. Furthermore, the article scrutinizes resilience assessment in Slovakia, and it briefly examines approaches towards natural threats. In addition, the article demonstrates several approaches towards flood resilience. Having used different methods, the primary concern is to devise a framework for resilience assessment. Therefore, the included case study examines aspects of the proposed framework for resilience assessment. In conclusion, our aim was, in most respects, to outline an innovative methodological framework for increasing the resilience of electricity infrastructure.


Author(s):  
L. Hassim ◽  
S. Coetzee ◽  
V. Rautenbach

<p><strong>Abstract.</strong> Informal settlements, also known as slums or shanty towns, are characterised by rapid and unstructured expansion, poorly constructed buildings, and in some cases, they are on disputed land. Such settlements often lack basic services, such as electricity. As a result, informal settlement dwellers turn to hazardous alternative sources of energy, such as illegal electricity connections and paraffin. Solar power is a clean and safe alternative. However, informal settlements are often located on undesirable land on the urban fringe where the topography may hinder the use of solar energy. The high density of dwellings could also be a hindrance. Therefore, the solar potential needs to be assessed before any implementations are planned. Solar potential assessment functionality is generally available in geographic information system (GIS) products. The nature, cost and accessibility of datasets required for the assessment vary significantly. In this paper, we evaluate the results of solar potential assessments using GRASS (Geographic Resources Analysis Support System) for a number of different datasets. The assessments were done for two informal settlements in the City of Tshwane (South Africa): Alaska, which is nestled on a hill; and Phomolong, a densely populated settlement with a rather flat topography. The results show that solar potential assessments with open source GIS software and freely available data are feasible. This eliminates the need for lengthy and bureaucratic procurement processes and reduces the financial costs of assessing solar potential for informal settlements.</p>


2011 ◽  
Vol 9 (5) ◽  
pp. 767-773 ◽  
Author(s):  
Eduardo Alejandro Martinez Cesena ◽  
Francisco Rivas Davalos

2020 ◽  
Vol 2 (2) ◽  
pp. 15-22
Author(s):  
Veronica Sri Astuti

This study aims to determine the impact / benefits of the CSR Mikrohydro program by PT. PJB UP Paiton in Andungbiru Village, Probolinggo Regency. This can be seen by using the Social Return On Investment (SROI) analysis. Andungbiru Village is a village that is located very remote and is a mountainous area, where the electricity infrastructure is from very minimal even almost unusable. CSR Mikrohydro by PT. PJB UP Paiton helps the people of Andungbiru Village by reactivating the PLTMH (Micro Hydro Power Plant) which once existed during the Dutch colonial era. SROI analysis shows that CSR Mikrohydro by PT. PJB UP Paiton in Andungbiru Village has succeeded in providing benefits and empowering the Andungbiru Village community economically and socially, as well as maintaining environmental sustainability. Keywords: Social Return On Investment; CSR


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