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    • 1. 发明申请
    • SECURE PASSWORD DISTRIBUTION TO A CLIENT DEVICE OF A NETWORK
    • 安全的密码分发给网络的客户端设备
    • US20080141352A1
    • 2008-06-12
    • US11608966
    • 2006-12-11
    • Brett L. LindsleyThomas S. Messerges
    • Brett L. LindsleyThomas S. Messerges
    • H04L9/32
    • H04L63/083H04L63/166H04L63/168
    • A password is securely distributed to a client device of a network by sending a first encrypted message from the client device to a server of the network, the first message comprising a nonce created by the client device, a username of the client device, and a network address of the client device, then sending a second message from the server to the network address of the client device, the second message comprising the nonce created by the client device, and a password created by the server. If the client device verifies that the nonce received from the server matches the nonce sent to the server, the password and username may be used to enable to client device to access information on the server. The first encrypted message may be an HTTPS message and the second message may be an SMS message.
    • 通过从客户端设备发送第一加密消息到网络的服务器,将密码安全地分发到网络的客户端设备,该第一消息包括客户端设备创建的随机数,客户端设备的用户名,以及 客户端设备的网络地址,然后从服务器发送第二消息到客户端设备的网络地址,第二个消息包括由客户端设备创建的随机数,以及由服务器创建的密码。 如果客户端设备验证从服务器接收的随机数匹配发送到服务器的随机数,则可以使用密码和用户名来启用客户端设备来访问服务器上的信息。 第一加密消息可以是HTTPS消息,第二消息可以是SMS消息。
    • 6. 发明申请
    • AGGREGATED HASH-CHAIN MICROPAYMENT SYSTEM
    • 集成式HASH-CHAIN MICROPAYMENT SYSTEM
    • US20090198619A1
    • 2009-08-06
    • US12026694
    • 2008-02-06
    • Mahesh V. TripunitaraThomas S. Messerges
    • Mahesh V. TripunitaraThomas S. Messerges
    • G06Q20/00H04L9/32G06Q40/00
    • G06Q20/02G06Q20/3829G06Q20/40G06Q20/401H04L9/3213H04L9/3236H04L2209/38H04L2209/56
    • Disclosed are a system and method for aggregating micropayment hash chains. An end user (the “payer”) cryptographically signs “commitments” and transmits then to a vendor. The commitments include an “accumulated count” field which tracks the total number of micropayments made thus far in the payment transaction between the payer and the vendor. The payer can also transmit payment tokens to the vendor. These payment tokens include micropayments verified by a hash chain. When the vendor seeks reimbursement from a broker, the vendor tells the broker the total number of micropayments in the payment transaction and sends verification information to the broker. The broker checks this information against a verification system established with the payer. If the information is verified to be correct, then the broker reimburses the vendor for the services provided and charges the payer. The verification information ensures that the payer and vendor cannot cheat each other.
    • 公开了一种用于聚合微支付哈希链的系统和方法。 最终用户(“付款人”)密码地签署“承诺”,然后传送给供应商。 这些承诺包括“累计计数”字段,跟踪到付款人和供应商之间的付款交易中迄今为止所进行的小额支付总数。 付款人还可以向供应商传送付款令牌。 这些付款令牌包括通过哈希链验证的小额支付。 当供应商寻求经纪人的报销时,供应商告诉经纪人支付交易中的小额支付总额,并向经纪人发送验证信息。 经纪人根据与付款人建立的验证系统检查此信息。 如果信息被证实是正确的,那么经纪人向供应商报销所提供的服务,并向付款人收取费用。 验证信息确保付款人和供应商不能互相欺骗。
    • 7. 发明授权
    • Binding keys to secure media streams
    • 绑定密钥以保护媒体流
    • US08467536B2
    • 2013-06-18
    • US12962906
    • 2010-12-08
    • Adam C. LewisThomas S. Messerges
    • Adam C. LewisThomas S. Messerges
    • H04L9/00H04L9/08H04L29/06H04K1/00
    • H04L65/4061H04L63/06H04L65/607H04L2463/062H04W80/12
    • A key message can include a key-encryption-key (KEK) associated with a KeyDomainID and a KeyGroupID. A session description message can describe streaming media initialization parameters containing media stream information for one or more media streams. For each media stream, the media stream information can include an IP address and a data port. The session description message can further contain a linkage for binding the KEK to a corresponding one of the media streams. The linkage can include the KeyDomainID and KeyGroupID or can include an abstract representation of the KeyDomainID and KeyGroupID. During session initialization, the key-encryption-key (KEK) can be bound to the media streams using the linkage of the session description message. Each of the media streams can be secured using a traffic key conveyed to user equipment (UE) under protection of the key-encryption-key (KEK).
    • 密钥消息可以包括与KeyDomainID和KeyGroupID相关联的密钥加密密钥(KEK)。 会话描述消息可以描述包含用于一个或多个媒体流的媒体流信息的流媒体初始化参数。 对于每个媒体流,媒体流信息可以包括IP地址和数据端口。 会话描述消息还可以包含用于将KEK绑定到相应的一个媒体流的链接。 该链接可以包括KeyDomainID和KeyGroupID,或者可以包括KeyDomainID和KeyGroupID的抽象表示。 在会话初始化期间,密钥加密密钥(KEK)可以使用会话描述消息的链接绑定到媒体流。 可以使用在密钥加密密钥(KEK)的保护下传送到用户设备(UE)的业务密钥来保护每个媒体流。