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- W2891574346 abstract "There are presently worldwide targets fordecreasing anthropogenic greenhouse gases (GHGs) emissions owing toglobal climate change concerns. Here in the United Kingdom, thegovernment has committed to reduce its GHGs emissions by at least80% by 2050 relative to 1990 levels. In order to achieve theambitious 2050 targets and minimise cumulative emissions along theway, modern power systems are facing a series of great challenges.These challenges include extensive utilisation of renewablegeneration, diverse demand – side participation in power systemoperation and planning, as well as considerable application ofemerging smart devices and appliances. All of these challenges willsignificantly increase the complexity of future power systems interms of both operation and design. Regardless, the primaryobjective of power systems remains the same. That is the systemmust supply all the customers (responsive ones and non-responsiveones) with electricity as economically as possible and with anadequate level of continuity and quality.With the widespreadutilisation of smart meters and appliances as well as thelarge-scale installation of different storage technologies, theservices that demand response (DR) and electrical energy storage(EES) resources can provide will cover a wide range of ancillaryservices. More importantly, the grid-scale penetration of DR andEES resources is able to provide energy management and capacitysupport services, which can be considered as the alternative togeneration resources. In this light, considerable amount ofresearch has been done focusing on engaging particular types ofelectricity users with different kinds of incentives and/or tariffschemes, so that the economic benefits to both utilities andcustomers are optimised. However, no general framework forsystematic assessment of the contribution to power system adequacyof supply from potential grid-scale penetration of DR and EESresources is available up till now, particularly taking specificconsideration of DR's flexibility and payback characteristics aswell as EES's operational parameters.The research work in thisthesis therefore emphasises exclusively on the potential ofgrid-scale DR and EES resources to serve as alternative resourcesto electricity generation within the context of power systemadequacy of supply. More specifically, based on literature surveyof existing studies in similar topics, this thesis has made somesubstantial contributions and innovations, such as developing novelmodels of these emerging demand-side resources, implementing asystematic adequacy of supply assessment with new aspect to measurethe level of adequacy of supply (new indices), proposing a noveland comprehensive framework for evaluation of the capacity creditof DR and EES, and analysing the economic value based on powersystem fundamental long – term costs of interruption and supply.Ultimately, this thesis has established a comprehensive frameworkfor assessment of the contribution of DR and EES to power systemadequacy of supply.…" @default.
- W2891574346 created "2018-09-27" @default.
- W2891574346 creator A5088462668 @default.
- W2891574346 date "2015-01-01" @default.
- W2891574346 modified "2023-09-23" @default.
- W2891574346 title "Comprehensive framework for assessment of the contribution of demand response and electrical energy storage to power system adequacy of supply" @default.
- W2891574346 hasPublicationYear "2015" @default.
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