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NATIONAL ELECTRICITY MARKET (2) answer(s).
 
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ID:   127908


Magnitude of the impact of a shift from coal to gas under a car / Wagner, Liam; Molyneaux, Lynette; Foster, John   Journal Article
Foster, John Journal Article
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Publication 2014.
Summary/Abstract We seek to evaluate the extent of the pass through of increased fuel and carbon costs to wholesale prices with a shift of generation from coal-fired to gas-fired plants. Modelling of Australia's National Electricity Market in 2035 is undertaken using Australian Energy Market Operator assumptions for fuel costs, capital costs and demand forecasts. An electricity market simulation package (PLEXOS), which uses deterministic linear programming techniques and transmission and generating plant data, is used to optimize the power system and determine the least cost dispatch of generating resources to meet a given demand. We find that wholesale market prices increase due to the full pass through of the increased costs of gas over coal as an input fuel and the Carbon Price. In addition, we find that wholesale prices increase by more than the pass through of fuel and carbon costs because of the fact that generators can charge infra-marginal rents and engage in strategic behaviour to maximize their profits.
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2
ID:   190593


Quantifying reserve capabilities for designing flexible electricity markets: an Australian case study with increasing penetrations of renewables / Prakash, Abhijith   Journal Article
Prakash, Abhijith Journal Article
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Summary/Abstract Across several power systems with market frameworks, policy-makers are proposing that balancing flexibility requirements emerging during energy transition be addressed through new reserve product markets. However, these may introduce additional costs, constraints and complexity, and even encroach upon the functions of existing operational practices. Thus, policy-makers need to assess and compare flexibility design options, and quantifying system flexibility capabilities based on current and expected resource mixes can assist in achieving this. In this article, we offer a practical method to quantify the time-varying spectrum of upwards and downwards flexibility capabilities in systems, and subsequently apply it to historical and projected resource mixes in two regions of the Australian National Electricity Market. Our results suggest that with higher penetrations of renewable energy: (1) downwards flexibility margins can be exhausted around noon if wind and solar are unable or unwilling to provide it, (2) upwards flexibility becomes more scarce during morning and evening peak demand events and (3) a greater portion of upwards flexibility is provided by energy-limited resources. Given these trends, we recommend that policy-makers examine how existing operational practices can be augmented to elicit upwards flexibility provision, and that duration specifications and sustained footroom procurement be considered for reserve products.
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