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SYSTEM ENERGY EFFICIENCY CONTROLLER IN SMART ENERGY NETWORK, CONTROL METHOD THEREOF, AND CONTROL METHOD FOR TERMINAL DEVICE

机译:智能能源网络中的系统能源效率控制器,其控制方法和终端设备的控制方法

摘要

A system energy efficiency controller (20) in a smart energy network, a control method thereof, and a control method for a terminal device. The system energy efficiency controller (20) includes: a control decision module (21), a storage module (22), a power clock module (23), an internal communication module (24), and an external communication module (25). The storage module (22) is connected to the control decision module (21), and is used for storing the temporary and permanent information data in the operation process of the storage system. The power clock module (23) is connected to the control decision module (21), and is used for providing an internal clock and achieving the timing synchronization of a plurality of processors on the controller. The internal communication module (24) is used for providing two-way communication between the system energy efficiency controller (20) and a plurality of control implementation units (11a, 11b, 14a, 12a, 13a) of multiple terminal devices. The external communication module (25) is used for providing two-way communication between the system energy efficiency controller (20) and a local optimizer (30) on a superior level. The multiple terminal devices include: at least one of the terminal devices for the stages of energy production (11), storage (12), application (13) and regeneration (14). The system energy efficiency controller (20) achieves distributed bottom-layer control by way of hierarchical information interaction.
机译:智能能源网络中的系统能效控制器(20),其控制方法和终端设备的控制方法。系统能效控制器(20)包括:控制决策模块(21),存储模块(22),电源时钟模块(23),内部通信模块(24)和外部通信模块(25)。存储模块(22)连接到控制决策模块(21),并且用于在存储系统的操作过程中存储临时和永久信息数据。电源时钟模块(23)连接至控制判定模块(21),用于提供内部时钟并实现控制器上多个处理器的定时同步。内部通信模块(24)用于在系统能效控制器(20)和多个终端设备的多个控制实现单元(11a,11b,14a,12a,13a)之间提供双向通信。外部通信模块(25)用于在系统能效控制器(20)和本地优化器(30)之间提供较高级别的双向通信。多个终端设备包括:用于能量产生(11),存储(12),应用(13)和再生(14)的阶段的终端设备中的至少一个。系统能效控制器(20)通过分层信息交互来实现分布式底层控制。

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