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    • 6. 发明授权
    • Secure network storage
    • 安全的网络存储
    • US09088538B2
    • 2015-07-21
    • US13838024
    • 2013-03-15
    • Ty Brendan LindteigenJohn Curtis
    • Ty Brendan LindteigenJohn Curtis
    • H04L29/06G06F21/00H04L9/00
    • H04L63/0428G06F21/00G06F21/6218H04L9/006H04L9/0816H04L63/00H04L63/0272H04L63/0442H04L63/107H04L2209/24
    • This invention includes a synchronized storage server enabled to send the end-point device a notification including the root folder list. The end-point device compares the sent root folder list to a previously stored root folder list in the end-point devices' memory. If the end-point device detects either a new root folder on the synchronized storage server, a change in an existing folder, or deleted content in a folder the end-point device will determine that a change is required to the stored data. Next the end-point device will synchronize with the synchronized storage server and create a new storage list. Finally, the synchronized storage server will send the end-point device a new encrypted folder encryption key which includes the encrypted file contents along with identifying information such as the server name and revision information.
    • 本发明包括能够向端点设备发送包括根文件夹列表的通知的同步存储服务器。 端点设备将发送的根文件夹列表与端点设备内存中之前存储的根文件夹列表进行比较。 如果终点设备检测到同步存储服务器上的新根文件夹,则现有文件夹中的更改或文件夹中已删除的内容将终止设备将确定对存储的数据进行更改。 接下来,终端设备将与同步存储服务器同步并创建新的存储列表。 最后,同步存储服务器将向端点设备发送一个新的加密文件夹加密密钥,其中包括加密的文件内容以及诸如服务器名称和修订信息之类的标识信息。
    • 8. 发明授权
    • Certificate authority server protection
    • 证书授权服务器保护
    • US09380048B2
    • 2016-06-28
    • US13928400
    • 2013-06-27
    • Ty Brendan LindteigenJames Chester Jones
    • Ty Brendan LindteigenJames Chester Jones
    • H04L29/06
    • H04L9/3263H04L9/083H04L9/0861H04L9/14H04L9/30H04L63/062H04L63/0823
    • This invention includes a solution to enable a digital authentication solution comprising a network. Next, a first device is coupled to the network. The first device may include an authentication key generator that is able to generate both public and private keys in electronic formats. Next, the first device is coupled to a certificate authority gateway. The certificate authority gateway includes devices capable of converting the electronically formatted public key to a non-electronic format, and vice versa. Next, the certificate authority gateway is coupled to a certificate authority server. The certificate authority server includes devices capable of converting the electronically formatted public key to a non-electronic format, and vice versa. The certificate authority server is also contained in a secure area such as a locked room, or a safe. The secure area includes features that allow the non-electronically formatted public key to be passed across the boundary of the secure area. Finally, a second device is coupled to the network.
    • 本发明包括能够实现包括网络的数字认证解决方案的解决方案。 接下来,第一设备耦合到网络。 第一设备可以包括认证密钥生成器,其能够以电子格式生成公钥和私钥。 接下来,第一设备耦合到认证机构网关。 认证机构网关包括能够将电子格式化的公钥转换为非电子格式的设备,反之亦然。 接下来,认证机构网关被连接到认证机构服务器。 认证机构服务器包括能够将电子格式化的公钥转换为非电子格式的装置,反之亦然。 证书颁发机构服务器也包含在诸如锁定的房间或保险柜之类的安全区域中。 安全区域包括允许非电子格式化的公钥通过安全区域的边界的特征。 最后,第二设备耦合到网络。
    • 9. 发明授权
    • Secure non-geospatially derived device presence information
    • 安全的非地理空间派生设备存在信息
    • US09124574B2
    • 2015-09-01
    • US13969544
    • 2013-08-17
    • Ty Brendan LindteigenJames Chester JonesDipen PatelAnthony Payne
    • Ty Brendan LindteigenJames Chester JonesDipen PatelAnthony Payne
    • H04L29/06H04L29/08
    • H04L63/08H04L63/02H04L63/0435H04L63/0815H04L63/083H04L63/0869H04L67/24
    • This invention includes a system and method to enable a device to determine the presence information of another device over a secure communication network. First, the device and a presence server establish a secure connection. Next, while the initial secure connection with the presence server is established, the device generates a randomly created token and provides it to the presence server. The token is used as a shared-secret by the device and the presence server to secure future presence communications over a non-secure connection. Next, without the need to again enter a password or establish a secure connection with the presence server, the device uses the shared-secret to sign, encrypt and convey presence information to the presence server over an arbitrary connection. Finally, the presence server may share the first device's presence information with another device.
    • 本发明包括一种使设备能够通过安全通信网络确定另一设备的存在信息的系统和方法。 首先,设备和存在服务器建立安全连接。 接下来,当建立与存在服务器的初始安全连接时,设备生成随机创建的令牌并将其提供给呈现服务器。 令牌由设备和存在服务器用作共享密钥,以通过非安全连接保护未来存在通信。 接下来,不需要再次输入密码或与存在服务器建立安全连接,设备使用共享秘密通过任意连接对存在服务器进行签名,加密和传送存在信息。 最后,存在服务器可以与另一设备共享第一设备的存在信息。