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    • 31. 发明授权
    • Electric power system protective control system, method of controlling electric power system protective control system and storage medium storing program module
    • 电力系统保护控制系统,电力系统保护控制系统的控制方法和存储程序模块的存储介质
    • US06571153B1
    • 2003-05-27
    • US09425612
    • 1999-10-22
    • Takeshi MaedaYoshihiro KoizumiTatsuji TanakaKatsuhiko Sekiguchi
    • Takeshi MaedaYoshihiro KoizumiTatsuji TanakaKatsuhiko Sekiguchi
    • G05D312
    • G05B9/02
    • In the electric power system protective control system, a plurality of protective control apparatuses each having a protective control function to an electric power system are distributed and connected through a communication network to each other so that data communication is permitted among the respective protective control apparatuses. Each of the protective control apparatuses is carried out a process of executing a control operation related to the protective control function of the own apparatus according to a program module. The program module migrates through the communication network to the own apparatus along a predetermined route of migration. Each of the protective control apparatuses executes a process of migrating the program module from the own apparatus to another protective control apparatus. The another protective control apparatus is determined to a next destination of migration according to the route of migration. In a case where the program module is not migrated by the migration process to the next destination protective control apparatus, each of the protective control apparatuses executes a process of changing a next destination of migration of the program module to a predetermined protective control apparatus except for the next destination protective control apparatus, making it possible to prevent the program module from stopping.
    • 在电力系统保护控制系统中,将具有对电力系统的保护控制功能的多个保护控制装置通过通信网络彼此分配连接,从而在各保护控制装置之间进行数据通信。 每个保护控制装置执行与根据程序模块的本装置的保护控制功能相关的控制操作的处理。 程序模块沿着预定的迁移路径通过通信网络迁移到自己的设备。 每个保护控制装置执行将程序模块从自身装置迁移到另一个保护控制装置的处理。 根据迁移路径将另一保护控制装置确定为下一迁移目的地。 在程序模块不通过迁移过程迁移到下一个目的地保护控制装置的情况下,每个保护控制装置执行将程序模块的下一迁移目的地改变为预定的保护控制装置的处理,除了 下一个目的地保护控制装置,使得可以防止程序模块停止。
    • 33. 发明授权
    • Lithium secondary battery
    • 锂二次电池
    • US06428930B2
    • 2002-08-06
    • US09220353
    • 1998-12-24
    • Takeshi MaedaHideyuki InomataNaoya NakanishiIkuo YonezuKoji Nishio
    • Takeshi MaedaHideyuki InomataNaoya NakanishiIkuo YonezuKoji Nishio
    • H01M448
    • H01M10/0525H01M4/131H01M4/505H01M4/525H01M10/0587
    • A lithium secondary battery according to the present invention comprises: a positive electrode having a positive electrode active material composed of a reversible lithium intercalation material; a negative electrode having a negative electrode active material composed of a reversible lithium intercalation material; and a separator interposed between said positive electrode and said negative electrode, and in the positive electrode active material, at least one material which shows a positive sign of a total sum of entropy heat from a discharged state to a charged state is mixed with at least one material which shows a negative sign of a total sum of an entropy heat from a discharged state to a charged state. In a battery having such a construction, the amount of entropy heat during charge is reduced compared with a battery employing only a material which shows a positive sign of the total sum of entropy heat. As a result of this, a battery produced in accordance with the present invention achieves an improved cycle characteristic, and thereby is capable of preventing a large deterioration of a battery performance.
    • 根据本发明的锂二次电池包括:正极,具有由可逆的锂嵌入材料构成的正极活性物质;负极,具有由可逆的锂嵌入材料构成的负极活性物质; 和分离器插入在所述正极和所述负极之间,并且在正极活性物质中,至少一种显示从放电状态到充电状态的熵热的总和的正征的材料与至少一个 显示从放电状态到充电状态的熵热的总和的负号的材料。 在具有这种结构的电池中,与仅使用显示熵热总和的材料的电池相比,充电期间的熵热量减少。 结果,根据本发明制造的电池实现了改进的循环特性,从而能够防止电池性能的大的劣化。