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    • 1. 发明授权
    • Maintaining data consistency between integrated applications
    • 维护集成应用程序之间的数据一致性
    • US07958092B2
    • 2011-06-07
    • US11984040
    • 2007-11-13
    • Thomas WernerClaus VetterLorenzo GulliErik SvenssonTatjana Kostic
    • Thomas WernerClaus VetterLorenzo GulliErik SvenssonTatjana Kostic
    • G06F17/30
    • G06F9/52
    • The present disclosure facilitates the interoperability between different local applications. Related local data objects are referenced via global objects or reference containers within a global data model or a global address space of an integration solution. The present disclosure assumes that the integration solution is per default in a consistent state, e.g., an engineered or initially configured global address space is regarded as consistent, and all software components that operate within this space assume that the information they access is valid and likewise consistent. The local applications are the only components that can interact with the global address space and introduce invalidations, they are continuously monitored for changes. Invalidation and subsequent synchronization or restoration of consistency is performed upon a particular triggering event related to a change in a local application object (such as an insertion or removal of an object or a modification of an attribute thereof) or related to a changing application or adapter status (component shutdown/startup).
    • 本公开有利于不同本地应用之间的互操作性。 相关的本地数据对象通过集成解决方案的全局数据模型或全局地址空间中的全局对象或引用容器进行引用。 本公开假定集成解决方案是以一致的状态为默认的,例如,被设计或初始配置的全局地址空间被认为是一致的,并且在该空间内操作的所有软件组件假定他们访问的信息是有效的,同样地 一致 本地应用程序是唯一可与全局地址空间进行交互并引入无效的组件,它们将不断地被监视以进行更改。 在与本地应用对象的变化相关的特定触发事件(例如,对象的插入或移除或其属性的修改)或与改变的应用或适配器有关的特定触发事件上执行无效和随后的同步或恢复 状态(组件关闭/启动)。
    • 2. 发明申请
    • Maintaining data consistency between integrated applications
    • 维护集成应用程序之间的数据一致性
    • US20080133613A1
    • 2008-06-05
    • US11984040
    • 2007-11-13
    • Thomas WernerClaus VetterLorenzo GulliErik SvenssonTatjana Kostic
    • Thomas WernerClaus VetterLorenzo GulliErik SvenssonTatjana Kostic
    • G06F17/30
    • G06F9/52
    • The present disclosure facilitates the interoperability between different local applications. Related local data objects are referenced via global objects or reference containers within a global data model or a global address space of an integration solution. The present disclosure assumes that the integration solution is per default in a consistent state, e.g., an engineered or initially configured global address space is regarded as consistent, and all software components that operate within this space assume that the information they access is valid and likewise consistent. The local applications are the only components that can interact with the global address space and introduce invalidations, they are continuously monitored for changes. Invalidation and subsequent synchronization or restoration of consistency is performed upon a particular triggering event related to a change in a local application object (such as an insertion or removal of an object or a modification of an attribute thereof) or related to a changing application or adapter status (component shutdown/startup).
    • 本公开有利于不同本地应用之间的互操作性。 相关的本地数据对象通过集成解决方案的全局数据模型或全局地址空间中的全局对象或引用容器进行引用。 本公开假定集成解决方案是以一致的状态为默认的,例如,被设计或初始配置的全局地址空间被认为是一致的,并且在该空间内操作的所有软件组件假设他们访问的信息是有效的,同样地 一致 本地应用程序是唯一可与全局地址空间进行交互并引入无效的组件,它们将不断地被监视以进行更改。 在与本地应用对象的变化相关的特定触发事件(例如,对象的插入或移除或其属性的修改)或与改变的应用或适配器有关的特定触发事件上执行无效和随后的同步或恢复 状态(组件关闭/启动)。
    • 5. 发明申请
    • Data Consistency Validation
    • 数据一致性验证
    • US20070276970A1
    • 2007-11-29
    • US10593095
    • 2004-03-17
    • Thomas WernerClaus VetterErik SvenssonThomas Koch
    • Thomas WernerClaus VetterErik SvenssonThomas Koch
    • G06F17/30
    • H04L41/0869H04L41/00
    • Attribute consistency works on the comparison of a reference value against the online value of the attributes, which are retrieved from the corresponding system. In order to know which attributes need to be considered for consistency, a list of relevant attributes of each entity type in each application is stored together with the reference value of the entity. This attribute list is used by the consistency service. Therefore several attribute values of one entity in one system can be included in a combined “hash” value. At start-up or in the engineering phase, this reference value is computed out of the defined attribute list. At the time of a consistency check, the values of the attributes are read and a “hash” value is calculated with the same algorithm as the reference value. If those two values differ, an inconsistency occurred. The inventive method allows validating consistency of attributes of an entity in one of the participating applications. Any inconsistency can be propagated to all other participating applications which then may trigger functionality accordingly.
    • 属性一致性用于比较参考值与属性的在线值,从相应的系统检索。 为了知道哪些属性需要考虑一致性,每个应用程序中每个实体类型的相关属性的列表与实体的参考值一起存储。 该属性列表由一致性服务使用。 因此,一个系统中的一个实体的几个属性值可以被包括在组合的“散列”值中。 在启动或工程阶段,该参考值是从定义的属性列表中计算的。 在一致性检查时,读取属性的值,并使用与参考值相同的算法计算“哈希”值。 如果这两个值不同,则发生不一致。 本发明的方法允许验证一个参与应用中的实体的属性的一致性。 任何不一致都可以传播到所有其他参与的应用程序,然后可以相应地触发功能。
    • 7. 发明授权
    • Device in continuous casting in a mould
    • 在模具中连续铸造的装置
    • US5664619A
    • 1997-09-09
    • US454308
    • 1995-06-19
    • Erland AnderssonJan-Erik ErikssonMagnus HallefaltSten KollbergErik SvenssonGote Tallback
    • Erland AnderssonJan-Erik ErikssonMagnus HallefaltSten KollbergErik SvenssonGote Tallback
    • B22D11/04B22D11/049B22D11/051B22D11/10B22D11/115B22D27/02
    • B22D11/115
    • A device for continuously manufacturing a cast strand by continuous casting of liquid metal melt wherein the flow of the liquid metal in the non-solidified portions of the strand is controlled by means of a static or periodic low-frequency magnetic field. A mould adapted to be supplied with the melt includes copper plates (2a,2b) which form a casting mould space with a rectangular cross section, water box beams (3) which are arranged outside the copper plates to support and cool them, and a member (4) holding the mould together. Magnetic field-generating devices, i.e., magnets, are provided close to the mould to generate a static or periodic low-frequency magnetic field which acts in the path of the inflowing melt and divides the primary flow as well as checks any secondary flows arising. Each magnet comprises a front core (5), a rear core and a coil (7). The front core is a fully integral part of the water box beam and the rear core comprises a rear movable part (6b) which is movable in a direction which substantially coincides with the direction of the field.
    • PCT No.PCT / SE94 / 00005 Sec。 371日期:1995年6月19日 102(e)1995年6月19日PCT PCT 1994年1月4日PCT公布。 WO94 / 16844PC PCT出版物 日期1994年8月4日一种用于通过液态金属熔体的连续铸造连续制造铸造线的装置,其中,通过静态或周期性低频磁场来控制在未固化部分中的液态金属的流动 。 适于供给熔融体的模具包括形成矩形截面的铸模空间的铜板(2a,2b),布置在铜板外侧以支撑和冷却它们的水箱梁(3),以及 (4)将模具固定在一起。 磁场产生装置,即磁体,靠近模具设置,以产生静态或周期性的低频磁场,该磁场作用在流入的熔体的路径中,并且分离主流以及检查所产生的二次流。 每个磁体包括前芯(5),后芯和线圈(7)。 前芯是水箱梁的完全整体部分,后芯包括可沿与场方向基本一致的方向移动的后可动部分(6b)。
    • 8. 发明授权
    • Furnace for solid fuels
    • 固体燃料炉
    • US5247892A
    • 1993-09-28
    • US689811
    • 1991-05-08
    • Erik Svensson
    • Erik Svensson
    • F23B10/00F23G5/00F23L1/00F23M5/00F23M7/00F23M11/02
    • F23L1/00F23B7/005F23M11/02F23M5/00F23M7/00
    • The invention concerns a furnace for biological fuels in which the combustion is effected downwards in order to allow firing down to very low output effect. In accordance with the invention the furnace has a fuel storage vessel (1) which also serves as a gas collection vessel and which during operation is pressurized to a slight atmospheric overpressure. The bottom part of the storage vessel is formed with sloping walls (4) the lower edges of which form a burner opening and above which opening is provided a draft-air supply means which extends closely alongside the sloping bottom along the portions thereof positioned closest to the burner opening.
    • PCT No.PCT / SE89 / 00637 Sec。 371日期1991年5月8日第 102(e)日期1991年5月8日PCT提交1989年11月8日PCT公布。 出版物WO90 / 05269 日期1990年5月17日。本发明涉及一种用于生物燃料的炉子,其中燃烧是向下进行的,以便使燃烧达到非常低的输出效果。 根据本发明,炉具有燃料储存容器(1),其也用作气体收集容器,并且在操作期间被加压到轻微的大气超压。 储存容器的底部形成有倾斜的壁(4),其下边缘形成燃烧器开口,并且在该开口的上方设有一个通风口供应装置,其沿着倾斜的底部沿其最靠近 燃烧器开口。
    • 10. 发明授权
    • Device for casting of metal
    • 金属铸件装置
    • US06340049B1
    • 2002-01-22
    • US09623379
    • 2000-09-01
    • Anders LehmanErik SvenssonTord KroonJan-Erik Eriksson
    • Anders LehmanErik SvenssonTord KroonJan-Erik Eriksson
    • B22D2702
    • B22D11/041B22D11/115
    • A device for continuous or semi-continuous casting of metal comprising a cooled mold (22) and an induction coil (10) arranged at the top end of the mold. The mold comprises in its top end a plurality of hollow, old segments (22a, 22b, 22c, 22d, 22e, 22f, 22′b, 22′c, 22′d) separated from each other by partitions (26a, 26b, 26c, 26d, 26e), which all comprise an electrically insulating barrier. Both the mold segments and the partitions are oriented essentially in the casting direction. Each hollow top end mold segment comprises a core of a mechanically supporting bar or beam (25a, 25b, 25c, 25d, 25e, 25f, 25′a, 25′b, 25′c, 25′d, 25′e, 25′f) arranged within the hollow mold segment such that it is surrounded by the hollow mold segment. The core exhibits superior mechanical properties in relation to the mold.
    • 一种用于连续或半连续铸造金属的装置,包括设置在模具顶端的冷却模具(22)和感应线圈(10)。 模具的顶端包括多个通过隔板(26a,26b,22b)分开的多个中空旧段(22a,22b,22c,22d,22e,22f,22'b,22'c,22'd) 26c,26d,26e),其全部包括电绝缘屏障。 模具段和隔板都基本上在铸造方向上取向。 每个中空的顶端模具段包括机械支撑杆或梁(25a,25b,25c,25d,25e,25f,25'a,25'b,25'c,25'd,25'e,25 'f)布置在中空模具段内,使得其被中空模具段包围。 该芯具有相对于模具优异的机械性能。