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    • 51. 发明申请
    • NETWORK REGISTRATION FOR CONTENT TRANSACTIONS
    • 网络注册内容交易
    • US20100070417A1
    • 2010-03-18
    • US12209819
    • 2008-09-12
    • Judson John FlynnErick John HaughnJohn Lewis
    • Judson John FlynnErick John HaughnJohn Lewis
    • H04L9/00
    • H04W12/06H04L63/16
    • System(s) and method(s) are provided for registration of non-mobile devices with a mobile network platform for secure content transactions among the mobile network platform and registered non-mobile devices, and mobile and registered non-mobile devices. Through various secure protocols, a registration component within the mobile network platform records non-mobile devices provisioned through a non-mobile network platform. Recordation includes validation of devices associated with the non-mobile devices and retention of devices records. Content transaction(s), e.g., content delivery and exchange, are conducted securely, and abide by license terms for content dissemination. Content transaction(s) can be billed based at least in part on license terms, or subscriber intelligence. Transacted content can be received and formatted by a master non-mobile within a network of provisioned non-mobile devices. The master non-mobile device securely delivers transacted contents to slave non-mobile devices and to the mobile network platform. Advertisement(s) also can be transacted.
    • 提供了系统和方法,用于在移动网络平台和注册的非移动设备以及移动和注册的非移动设备之间的非移动设备与用于安全内容交易的移动网络平台的注册。 通过各种安全协议,移动网络平台内的注册组件记录通过非移动网络平台提供的非移动设备。 记录包括验证与非移动设备相关的设备和保留设备记录。 内容交易(例如内容交付和交换)安全地进行,并且遵守内容传播的许可条款。 内容交易可以至少部分地基于许可条款或用户智能来计费。 可以由配置的非移动设备的网络内的主非移动设备来接收和格式化事务内容。 主非移动设备将交易内容安全地传递到从非非移动设备和移动网络平台。 广告也可以交易。
    • 52. 发明申请
    • MOBILE HANDSET EXTENSION TO A DEVICE
    • 移动手机延伸到设备
    • US20100062770A1
    • 2010-03-11
    • US12206489
    • 2008-09-08
    • Judson FlynnErick John HaughnJohn Lewis
    • Judson FlynnErick John HaughnJohn Lewis
    • H04W36/00
    • H04W12/06H04L63/08H04L67/303H04M1/67H04M1/673H04M3/42178H04M11/007H04W8/005H04W12/00H04W12/08H04W12/12H04W76/14H04W76/30H04W88/04
    • System(s) and method(s) are provided for extension of mobile operation to a device. An extension interface comprises a client component within a mobile that is linked to a client component within the device. Extension of mobile operation is secured via delivery of credentials associated with the mobile to the device. Delivery of credentials is temporary and typically spans the period during which mobile operation is extended to the device. Mobile's application(s) and content(s) can be conveyed to the device for utilization therein. An emulation component that can reside at least in part on the client component within the device can emulate mobile operation. Client component within the mobile can include at least in part (i) a component that downloads drivers for communication with, and utilization of, the device to which mobile operation is extended, and (ii) a component that can scan for wireless-capable devices to extend mobile service thereto.
    • 提供系统和方法用于将移动操作扩展到设备。 扩展接口包括移动站内的客户端组件,其被链接到设备内的客户端组件。 通过将与移动设备相关联的凭证传送到设备来保证移动操作的扩展。 凭证的交付是暂时的,通常跨越移动操作扩展到设备的时间段。 移动应用程序和内容可以传送到设备以便在其中使用。 可以至少部分地驻留在设备内的客户端组件上的仿真组件可以模拟移动操作。 移动终端内的客户端组件至少可以部分地包括(i)下载用于与移动操作扩展到的设备进行通信和利用的驱动程序的组件,以及(ii)可扫描无线能力设备的组件 扩展移动业务。
    • 58. 发明授权
    • Dive computer and method for determining gas formation
    • 潜水计算机和确定气体形成的方法
    • US07313483B2
    • 2007-12-25
    • US11256304
    • 2005-10-21
    • Steven CrowJohn Lewis
    • Steven CrowJohn Lewis
    • G06F19/00
    • G16H10/20G06F19/00
    • The invention disclosed herein employs an algorithm, the Gas Formation Model (“GFM”), to calculate the formation of free gas in a human body. The GFM is based on a novel theory of the formation of free gas relative to the physiology of the human cardiovascular system. Additionally, the GFM utilizes a novel means for the solution of integro-differential equations, the type of equations that derive from the introduction of physiological parameters. GFM-based dive computers utilize novel inputs, including a measure of exercise at depth to reflect the state of an individual's cardiovascular system. GFM-based dive computers also produce novel outputs, including the actual volume of free gas present in a diver's cardiovascular system. The GFM is implemented as a practical computational tool by means of a incorporating the algorithm into a dive computer.
    • 本文公开的本发明采用了气体形成模型(“GFM”)的算法来计算人体内游离气体的形成。 GFM基于相对于人类心血管系统生理学的自由气体形成的新颖理论。 此外,GFM利用一种新颖的方法来解决积分微分方程,这是从引入生理参数得出的方程式。 基于GFM的潜水电脑利用新的输入,包括深度运动的量度,以反映个人心血管系统的状态。 基于GFM的潜水电脑还产生新颖的产出,包括潜水员心血管系统中存在的实际体积的游离气体。 通过将算法合并到潜水计算机中,GFM被实现为实用的计算工具。