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    • 1. 发明申请
    • Partial Item Change Tracking and Synchronization
    • 部分项目更改跟踪和同步
    • US20110218963A1
    • 2011-09-08
    • US13107383
    • 2011-05-13
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • G06F17/30
    • G06F17/30584G06F17/30575G06F17/30581G06F19/00G06Q50/24H04L51/00
    • Embodiments herein change the way item syncing is handled and tracked between two devices. Changes to items are tracked in accordance with well defined property groups and each group is tracked independently of the other. For example, one group could contain large data items, e.g., attachments, while another group could include highly volatile properties like a follow-up flag. The present invention increases the sync rates between a client and a server by syncing only select portions of an item that have changed, without monitoring the change of each individual property within the item. Accordingly, if a change is made to a small data property (e.g., follow-up flag) on a relatively large email message, such change will not trigger a large download to a client running under a cached mode, nor will there be a requirement for high storage and processing for tracking each individual property.
    • 这里的实施例改变了在两个设备之间处理和跟踪项目同步的方式。 根据明确定义的属性组跟踪对项目的更改,并且每个组都独立于其他组进行跟踪。 例如,一个组可以包含大数据项,例如附件,而另一个组可以包括高度易失性的属性,如后续标志。 本发明通过仅通过同步仅改变项目的选择部分而增加了客户端和服务器之间的同步速率,而不监视项目内的每个单独属性的变化。 因此,如果在相对较大的电子邮件消息上对小数据属性(例如后续标志)进行了更改,则这种更改不会触发向缓存模式下运行的客户端的大量下载,也不会有要求 用于跟踪每个单独财产的高存储和处理。
    • 2. 发明授权
    • Partial item change tracking and synchronization
    • 部分项目更改跟踪和同步
    • US09524329B2
    • 2016-12-20
    • US13107383
    • 2011-05-13
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • G06F15/177G06F17/30G06Q50/24H04L12/58
    • G06F17/30584G06F17/30575G06F17/30581G06F19/00G06Q50/24H04L51/00
    • Embodiments herein change the way item syncing is handled and tracked between two devices. Changes to items are tracked in accordance with well defined property groups and each group is tracked independently of the other. For example, one group could contain large data items, e.g., attachments, while another group could include highly volatile properties like a follow-up flag. The present invention increases the sync rates between a client and a server by syncing only select portions of an item that have changed, without monitoring the change of each individual property within the item. Accordingly, if a change is made to a small data property (e.g., follow-up flag) on a relatively large email message, such change will not trigger a large download to a client running under a cached mode, nor will there be a requirement for high storage and processing for tracking each individual property.
    • 这里的实施例改变了在两个设备之间处理和跟踪项目同步的方式。 根据明确定义的属性组跟踪对项目的更改,并且每个组都独立于其他组进行跟踪。 例如,一个组可以包含大数据项,例如附件,而另一个组可以包括高度易失性的属性,如后续标志。 本发明通过仅通过同步仅改变项目的选择部分而增加了客户端和服务器之间的同步速率,而不监视项目内的每个单独属性的变化。 因此,如果在相对较大的电子邮件消息上对小数据属性(例如后续标志)进行了更改,则这种更改不会触发向缓存模式下运行的客户端的大量下载,也不会有要求 用于跟踪每个单独财产的高存储和处理。
    • 3. 发明授权
    • Partial item change tracking and synchronization
    • 部分项目更改跟踪和同步
    • US07962585B2
    • 2011-06-14
    • US11204067
    • 2005-08-15
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • Alec C. DunJoseph R. WarrenRobert R. Novitskey
    • G06F15/177
    • G06F17/30584G06F17/30575G06F17/30581G06F19/00G06Q50/24H04L51/00
    • Embodiments herein change the way item syncing is handled and tracked between two devices. Changes to items are tracked in accordance with well defined property groups and each group is tracked independently of the other. For example, one group could contain large data items, e.g., attachments, while another group could include highly volatile properties like a follow-up flag. The present invention increases the sync rates between a client and a server by syncing only select portions of an item that have changed, without monitoring the change of each individual property within the item. Accordingly, if a change is made to a small data property (e.g., follow-up flag) on a relatively large email message, such change will not trigger a large download to a client running under a cached mode, nor will there be a requirement for high storage and processing for tracking each individual property.
    • 这里的实施例改变了在两个设备之间处理和跟踪项目同步的方式。 根据明确定义的属性组跟踪对项目的更改,并且每个组都独立于其他组进行跟踪。 例如,一个组可以包含大数据项,例如附件,而另一个组可以包括高度易失性的属性,如后续标志。 本发明通过仅通过同步仅改变项目的选择部分而增加了客户端和服务器之间的同步速率,而不监视项目内的每个单独属性的变化。 因此,如果在较大的电子邮件消息中对小数据属性进行了更改(例如后续标志),则这种更改不会触发向缓存模式下运行的客户端的大量下载,也不会有要求 用于跟踪每个单独财产的高存储和处理。
    • 4. 发明授权
    • Regulating client requests in an electronic messaging environment
    • 在电子消息环境中调节客户端请求
    • US07594022B2
    • 2009-09-22
    • US10828760
    • 2004-04-21
    • Joseph R. WarrenRobert R. NovitskeyAmit KripalaniAlexander C. Dun
    • Joseph R. WarrenRobert R. NovitskeyAmit KripalaniAlexander C. Dun
    • G06F15/16
    • H04L51/30
    • The present invention is directed to regulating client requests in an electronic messaging environment. A client sends a data request to a messaging server. The messaging server receives the client data request and determines that the messaging server is unable to process the client data request. The messaging server adaptively generates a wait hint and sends a server response that includes the adaptively generated wait hint. The client receives the server response including the adaptively generated wait hint. The client waits a specified wait time in accordance with the adaptively generated wait hint to reduce the load on the messaging server. The client resends the data request subsequent to waiting the specified wait time.
    • 本发明涉及在电子消息环境中调节客户端请求。 客户端向消息服务器发送数据请求。 消息收发服务器接收客户端数据请求,并确定消息收发服务器无法处理客户端数据请求。 消息传递服务器自适应地生成等待提示,并发送包括自适应生成的等待提示的服务器响应。 客户端接收服务器响应,包括自适应生成的等待提示。 客户端根据自适应生成的等待提示等待指定的等待时间,以减少消息传递服务器上的负载。 等待指定的等待时间后,客户端重新发送数据请求。