2022
DOI: 10.1016/j.energy.2022.124311
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Multi-time scale optimal scheduling of integrated electricity and district heating systems considering thermal comfort of users: An enhanced-interval optimization method

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Cited by 16 publications
(2 citation statements)
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“…The diagram of the strategy is shown in Figure 2. In the initial scenario, the time-scale is set to 4 h [28,29], that is, rolling once every 4 h to optimize the dispatching for the next 4 h. When the system available reserve is not enough to compensate for the wind power forecasting error, 15 min is taken as one step to shorten the dispatching time-scales. Accordingly, the wind power forecasting steps are shortened as well.…”
Section: The Time-scale Adaptive Forecasting and Dispatching Integrat...mentioning
confidence: 99%
“…The diagram of the strategy is shown in Figure 2. In the initial scenario, the time-scale is set to 4 h [28,29], that is, rolling once every 4 h to optimize the dispatching for the next 4 h. When the system available reserve is not enough to compensate for the wind power forecasting error, 15 min is taken as one step to shorten the dispatching time-scales. Accordingly, the wind power forecasting steps are shortened as well.…”
Section: The Time-scale Adaptive Forecasting and Dispatching Integrat...mentioning
confidence: 99%
“…Cheng et al 17 proposed a multitime scale coordinated optimization method for energy hubs with multiple energy flows and types of energy storage systems. Liu et al 18 combined the enhanced interval optimization method to propose a multitime scale optimization scheduling model for improving the grid connection of wind power during the heating season. Pan et al 19 proposed an improved multitime scale coordinated control strategy for integrated energy systems with hybrid energy storage systems.…”
Section: Introductionmentioning
confidence: 99%