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Coordinated Operation and Control of Combined Electricity and Natural Gas Systems with Thermal Storage

机译:蓄热式电天然气联合系统的协调运行与控制

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As one of the most effective approaches in dealing with the energy crisis, combined electricity and natural gas systems have become more and more popular worldwide. To take full advantages of such hybrid energy networks, a proper operation and control method is required. In this paper, a novel approach coordinating combined heating and power generation is proposed. First, state excursion rate, a criterion describing the deviation of system operation, is defined for system state evaluation. Then, thermal energy storage is allocated to provide more and better operation modes for combined generation. By investigating the state excursion rate of hybrid energy systems, the optimal operation mode is chosen through an analytical strategy. Case studies on hybrid energy networks show that all state variables, including voltages in electric systems and pressures in gas networks, are adjusted to follow proper operation constraints by the implementations of the proposed strategy. In addition to providing sufficient auxiliary services for hybrid systems, it is also possible to maintain the economic and energy-efficient benefits of energy supply. This study provides an effective method to utilize the regulation capability of combined heating and power generations, which is a technical basis of energy internet.
机译:作为应对能源危机最有效的方法之一,电力和天然气联合系统已在全球范围内越来越流行。为了充分利用这种混合能源网络的优势,需要一种适当的操作和控制方法。在本文中,提出了一种新的将热电联产的方法。首先,定义状态偏移率(描述系统运行偏差的标准)以进行系统状态评估。然后,分配热能存储以提供更多更好的运行模式以进行联合发电。通过研究混合能源系统的状态偏移率,通过分析策略选择了最佳运行模式。对混合能源网络的案例研究表明,通过所提出策略的实施,可以对所有状态变量(包括电力系统中的电压和天然气网络中的压力)进行调整,以遵循适当的运行约束。除了为混合动力系统提供足够的辅助服务外,还可以保持能源供应的经济效益和节能效益。这项研究提供了一种有效的方法来利用热电联产的调节能力,这是能源互联网的技术基础。

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