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Dataset for the paper entitled "Real-time command strategies for microgrids based on the Contract Collaboration Problem"

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Dataset for the paper entitled "Real-time command strategies for microgrids based on the Contract Collaboration Problem". You are free to use the instances in the zip file, if you cite the following work: @article{Levorato2020, author = {Levorato, M. and Figueiredo, R. and Frota, Y. and Jouglet, A. and Savourey, D.}, journal = {To be published}, title = {{Real-time command strategies for microgrids based on the Contract Collaboration Problem}}, year = {2020} } Instances description ================================= 1) full_intances: the 3 microgrid instances used in the main experiments: - A_instance2_1NDU_Cons : the *Cons* microgrid instance, with only the consumer uncertain system; - A_instance2_1NDU_Prod : the *Prod* microgrid instance, with only the producer uncertain system; - A_instance2 : the *Prod\&Cons* microgrid instance, with both uncertain systems (producer and consumer). For each instance, there are 3 files, each one for a group of randomly generated scenarios: - _1000s_skewed-left.txt : left-skewed beta distribution with parameters $\alpha=5,\beta=2$; - _1000s_skewed-right.txt : right-skewed beta distribution with parameters $\alpha=2,\beta=5$; - _1000s_uniform.txt: uniform distribution. The randomly-generated scenario values are located in the end of each file. 2) toy_sensitivity: reduces microgrid instances used in the sensitivity tests. Each file corresponds to a specific combination of model cost parameters, and the filename follows this mask: OC_Ct__DS_ST_NDU__.txt The parameters OC_cost, DS_cost, ST_cost follow the values listed in Table VI of the aforementioned paper. (caption: Energy cost parameters in sensitivity analysis). can be one of the 3 distributions used in the work (skewed-left, skewed-right or uniform). The used was 'default'. The used was 'default'. Again, the randomly-generated scenario values are located in the end of each file.

本数据集对应论文《基于契约协作问题(Contract Collaboration Problem)的微电网(microgrid)实时调度策略》。若需使用该压缩包内的实例数据,请引用如下文献: @article{Levorato2020, author = {Levorato, M. and Figueiredo, R. and Frota, Y. and Jouglet, A. and Savourey, D.}, journal = {待刊}, title = {{Real-time command strategies for microgrids based on the Contract Collaboration Problem}}, year = {2020} } 实例说明 ================================= 1) 完整实例(full_intances):主实验中使用的3个微电网实例: - A_instance2_1NDU_Cons:仅包含用户侧不确定系统的**Cons**微电网实例; - A_instance2_1NDU_Prod:仅包含发电侧不确定系统的**Prod**微电网实例; - A_instance2:同时包含发电侧与用户侧不确定系统的**Prod&Cons**微电网实例。 每个实例对应3个文件,分别对应一组随机生成的场景: - _1000s_skewed-left.txt:参数为$alpha=5,eta=2$的左偏Beta分布; - _1000s_skewed-right.txt:参数为$alpha=2,eta=5$的右偏Beta分布; - _1000s_uniform.txt:均匀分布。 每个文件的末尾均存储有随机生成的场景数值。 2) 敏感性测试简化实例(toy_sensitivity):敏感性测试中使用的简化微电网实例。每个文件对应一组特定的模型成本参数组合,文件名遵循如下掩码规则:`OC_Ct__DS_ST_NDU__.txt`。其中OC_cost、DS_cost、ST_cost的取值参见上述论文的表VI(标题:敏感性分析中的能源成本参数)。分布类型可选用本文中使用的3种分布之一:左偏分布、右偏分布或均匀分布,本次使用的分布为「默认」,本次使用的NDU参数为「默认」。同样,随机生成的场景数值位于每个文件的末尾。
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2020-03-31
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