论文标题
在智能网络网络中安排灵活的非首选负载
Scheduling Flexible Non-Preemptive Loads in Smart-Grid Networks
论文作者
论文摘要
一个由具有热和可再生生成能力的发电机组成的市场,一组非抢先的负载(即,一旦启动,无法中断的负载)以及一个独立的系统操作员(ISO)。负载的特征是持续时间,功率需求率和接收服务的实用程序,以及功能的功能,可以为时间插槽提供首选服务的偏好。鉴于此信息,以及发电机的热生成成本功能和预测可再生生成,社会规划师解决了混合整数计划,以确定最大化社会福利的负载激活时间表。假设价格采取行为,我们基于社会规划师问题的轻松版本开发了一个竞争均衡概念,其中包括消费价格和灵活性的激励措施,并允许将功率分配给负载。考虑到每种负载是具有缩放特征的相同负载人群的代表,我们证明了放松的社会计划者的问题为在较大的人口限制中的原始混合整数问题提供了精确的解决方案,并提供了实施竞争平衡的市场机制。最后,我们通过案例研究评估将负载灵活性信息纳入功耗和生成计划的好处,从服务的比例和整体社会福利方面。
A market consisting of a generator with thermal and renewable generation capability, a set of non-preemptive loads (i.e., loads which cannot be interrupted once started), and an independent system operator (ISO) is considered. Loads are characterized by durations, power demand rates and utility for receiving service, as well as disutility functions giving preferences for time slots in which service is preferred. Given this information, along with the generator's thermal generation cost function and forecast renewable generation, the social planner solves a mixed integer program to determine a load activation schedule which maximizes social welfare. Assuming price taking behavior, we develop a competitive equilibrium concept based on a relaxed version of the social planner's problem which includes prices for consumption and incentives for flexibility, and allows for probabilistic allocation of power to loads. Considering each load as representative of a population of identical loads with scaled characteristics, we demonstrate that the relaxed social planner's problem gives an exact solution to the original mixed integer problem in the large population limit, and give a market mechanism for implementing the competitive equilibrium. Finally, we evaluate via case study the benefit of incorporating load flexibility information into power consumption and generation scheduling in terms of proportion of loads served and overall social welfare.