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    • 1. 发明授权
    • Global synchronization unit (GSU) for time and space (TS) stamping of input data elements
    • 用于时间和空间(TS)的输入数据元素的全局同步单元(GSU)
    • US06903681B2
    • 2005-06-07
    • US09579105
    • 2000-05-25
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • A63F13/12G06Q30/06G06Q50/18H04L29/06H04L29/08G01S5/02H04B7/185
    • A63F13/358A63F13/12A63F13/216A63F13/335A63F13/352A63F13/79A63F2300/401A63F2300/407A63F2300/50A63F2300/513A63F2300/532A63F2300/534A63F2300/552A63F2300/5546A63F2300/5573A63F2300/575G06Q30/06G06Q50/18H04L29/06027H04L63/0442H04L63/0823H04L63/12H04L67/02H04L67/06H04L67/18H04L67/34H04L67/38H04L67/42H04L69/28H04L69/329
    • A global synchronization unit (GSU) for time and space (TS) stamping of input data elements. The GSU comprises a GPS Receiver and an associated antenna for receiving GPS signals from signal sources associated with a GPS system symbolically embedded within a global reference system, and processing received GPS signals so as to automatically produce time and space (TS) stamp data element representative of the time and space coordinates of the GSU with respect to said global reference system at each data sampling instant occurring within the GSU. The GSU further comprises a central processor, operably connected to the GPS Receiver, and also a data input port, operably connected to a data input device and the central processor, for receiving an input data element from the data input device, at each data sampling instant. During GSU operation, the central processor (i) connects the input data element received at the data input port at each data sampling instant, with the TS-stamp data element generated at the sampling instant so as to produce a TS-stamped input data element, and (ii) stores each TS-stamped input data element in memory. By virtue of the present invention, the GSU enables collection of TS-coordinate information aboard the GSU for storage and subsequent transmission to a host computing device, which may be connected to an information network. The GSU can be used in diverse user applications, in which TS-stamping operations are required.
    • 用于输入数据元素的时间和空间(TS)的全局同步单元(GSU)。 GSU包括GPS接收器和相关联的天线,用于从与全球参考系统中符号嵌入的GPS系统相关联的信号源接收GPS信号,以及处理接收的GPS信号,以便自动产生时间和空间(TS)标记数据元素代表 的GSU的时间和空间坐标相对于所述全局参考系统在GSU内发生的每个数据采样时刻。 GSU还包括可操作地连接到GPS接收器的中央处理器,以及可操作地连接到数据输入设备和中央处理器的数据输入端口,用于在每个数据采样时接收来自数据输入设备的输入数据元件 瞬间。 在GSU操作期间,中央处理器(i)将在每个数据采样时刻在数据输入端口处接收的输入数据元素与在采样时刻生成的TS标记数据元素相连接,以便产生一个TS标记的输入数据元素 ,和(ii)将每个TS标记的输入数据元素存储在存储器中。 凭借本发明,GSU使得能够收集GSU上的TS坐标信息,用于存储和后续传输到可以连接到信息网络的主机计算设备。 GSU可用于各种用户应用,需要进行TS冲压操作。
    • 2. 发明授权
    • Internet-based system for enabling a time-constrained competition among a plurality of participants over the internet
    • 基于互联网的系统,用于通过互联网在多个参与者之间实现时间有限的竞争
    • US06659861B1
    • 2003-12-09
    • US09579222
    • 2000-05-26
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • G06F1700
    • A63F13/358A63F13/12A63F13/216A63F13/335A63F13/352A63F13/79A63F2300/401A63F2300/407A63F2300/50A63F2300/513A63F2300/532A63F2300/534A63F2300/552A63F2300/5546A63F2300/5573A63F2300/575G06Q30/06G06Q50/18H04L29/06027H04L63/0442H04L63/0823H04L63/12H04L67/02H04L67/06H04L67/18H04L67/34H04L67/38H04L67/42H04L69/28H04L69/329
    • An Internet-based system for enabling a time-constrained competition among a plurality of participants over the Internet. The Internet-based system comprises: a primary server having an embedded global positioning system (GPS) receiver; one or more web servers for providing information about the competition on the World Wide Web (WWW); a login server for enabling participants to log-in with the system prior to the competition; a competitor/participant database for storing information about each participant registered to participate in the competition; an invitation-to-respond/response database for storing invitations-to-responds (ITRs) (e.g. queries, problems, etc.) to be simultaneously displayed to participants at the competition, as well as the responses provided by each of the participants in response to the ITRs; one or more competition-promoting servers, each having an embedded GPS receiver, and conducting the competition process; and a plurality of GSU-enabled client machines. Each GSU-enabled client machine has an embedded Global Synchronization Unit (GSU). Each GSU-enabled client machine enables a registered participant to receive and display ITRs simultaneously with each and every other participant, and provide time and space (TS) stamped responses to the competition promoting servers. The competition promoting server fairly determines a winner amoung the participants independent of network latancies. All such components are interconnected with a globally-extensive network (e.g. the Internet) to enable the competition among the participants.
    • 一种基于互联网的系统,用于通过因特网在多个参与者之间实现时间有限的竞争。 基于因特网的系统包括:具有嵌入式全球定位系统(GPS)接收机的主服务器; 用于在万维网(WWW)上提供有关竞争的信息的一个或多个Web服务器; 登录服务器,用于使参与者能够在比赛前与系统登录; 用于存储关于登记参加比赛的每个参与者的信息的竞争者/参与者数据库; 用于存储邀请对响应(ITR)(例如查询,问题等)的邀请/响应/响应数据库,以同时显示给比赛的参与者,以及每个参与者提供的响应 对ITR的回应; 一个或多个竞争促进服务器,每个具有嵌入式GPS接收器,并进行竞争过程; 和多个支持GSU的客户机。 每个支持GSU的客户机都有一个嵌入式全局同步单元(GSU)。 每个启用GSU的客户端计算机使注册的参与者能够与每个其他参与者同时接收和显示ITR,并向竞争促销服务器提供时间和空间(TS)加密的响应。 竞争促进服务器公平地确定了独立于网络延迟的参与者。 所有这些组件与全球广泛的网络(例如因特网)互连,以使参与者之间的竞争。
    • 3. 发明申请
    • Internet-based method of and system for monitoring space-time coordinate information
    • 基于互联网的方法和系统,用于监视时空坐标信息
    • US20090063675A1
    • 2009-03-05
    • US12077731
    • 2008-03-20
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • G06F15/173
    • H04L67/16G06Q30/06H04L29/06027H04L67/12H04L67/18H04L67/325H04L67/34H04L67/38H04L67/42H04L69/28H04W4/029H04W4/185
    • An Internet-based method of and system for monitoring space-time coordinate information and biophysiological state information collected from an animate object moving along a course through the space-time continuum. The Internet-based system comprise a wireless GSU-enabled client network device affixed to the body of an animate object. The wireless device includes a global synchronization unit (GSU) for automatically generating time and space (TS) coordinate information corresponding to the time and space coordinate of the animate object with respect to a globally referenced coordinate system, as the animate object moves along a course through the space time continuum. The device also includes biophysiological state sensor affixed to the body of the animate object, for automatically sensing the biophysiological state of the animate object and generating biophysiological state information indicative of the sensed biophysiological state of the animate object along its course. The wireless device also includes a wireless date transmitter for transmitting the TS coordinate information and the biophysiological state information through free-space. A TS-stamping based tracking server receives the TS coordinate information and the biophysiological state information through in a wireless manner, and stores the same as the animate object moves along its course. An Internet information server serves Internet-based documents containing the collected TS coordinate and biophysiological state information. An Internet-enabled client system enables authorized persons to view the served Internet-based documents and monitor the collected TS coordinate and biophysiological state information, for various purposes.
    • 一种基于互联网的方法和系统,用于监测从沿着通过时空连续体的过程移动的动画对象收集的时空坐标信息和生物生理状态信息。 基于因特网的系统包括固定到动画对象的主体的无线GSU使能的客户端网络设备。 无线设备包括全局同步单元(GSU),用于当动画对象沿着一个路线移动时,自动生成对应于动画对象相对于全局参考坐标系的时间和空间坐标的时间和空间(TS)坐标信息 通过时空连续体。 该装置还包括固定在动画对象的身体上的生物物理状态传感器,用于自动检测动画对象的生物生理状态,并产生生物生理状态信息,该信息表示该动画对象沿其过程的感测生物生理状态。 无线设备还包括用于通过自由空间发送TS坐标信息和生物生理状态信息的无线日期发送器。 基于TS-冲印的跟踪服务器通过无线方式接收TS坐标信息和生物生理状态信息,并且存储与动画对象沿着其进程移动的信息。 互联网信息服务器提供包含收集的TS坐标和生物生理状态信息的基于因特网的文档。 支持因特网的客户端系统使得授权人员能够查看所提供的基于Internet的文档,并监视所收集的TS坐标和生物物理状态信息,以用于各种目的。
    • 4. 发明授权
    • INTERNET-BASED METHOD OF AND SYSTEM FOR MONITORING SPACE-TIME COORDINATE INFORMATION AND BIOPHYSIOLOGICAL STATE INFORMATION COLLECTED FROM AN ANIMATE OBJECT ALONG A COURSE THROUGH THE SPACE-TIME CONTINUUM
    • 基于互联网的方法和系统,用于通过空间连续的课程监视从动画对象收集的空间坐标信息和生物学状态信息
    • US06677858B1
    • 2004-01-13
    • US09583150
    • 2000-05-30
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • Sadeg M. FarisGregory HamlinJames P. Flannery
    • G08B2300
    • H04L67/16G06Q30/06H04L29/06027H04L67/12H04L67/18H04L67/325H04L67/34H04L67/38H04L67/42H04L69/28H04W4/02H04W4/029H04W4/185
    • An Internet-based method of and system for monitoring space-time coordinate information and biophysiological state information collected from an animate object moving along a course through the space-time continuum. The Internet-based system comprise a wireless GSU-enabled client network device affixed to the body of an animate object. The wireless device includes a global synchronization unit (GSU) for automatically generating time and space (TS) coordinate information corresponding to the time and space coordinate of the animate object with respect to a globally referenced coordinate system, as the animate object moves along a course through the space time continuum. The device also includes biophysiological state sensor affixed to the body of the animate object, for automatically sensing the biophysiological state of the animate object and generating biophysiological state information indicative of the sensed biophysiological state of the animate object along its course. The wireless device also includes a wireless date transmitter for transmitting the TS coordinate information and the biophysiological state information through free-space. A TS-stamping based tracking server receives the TS coordinate information and the biophysiological state information through in a wireless manner, and stores the same as the animate object moves along its course. An Internet information server serves Internet-based documents containing the collected TS coordinate and biophysiological state information. An Internet-enabled client system enables authorized persons to view the served Internet-based documents and monitor the collected TS coordinate and biophysiological state information, for various purposes.
    • 一种基于互联网的方法和系统,用于监测从沿着通过时空连续体的过程移动的动画对象收集的时空坐标信息和生物生理状态信息。 基于因特网的系统包括固定到动画对象的主体的无线GSU使能的客户端网络设备。 无线设备包括全局同步单元(GSU),用于当动画对象沿着一个路线移动时,自动生成对应于动画对象相对于全局参考坐标系的时间和空间坐标的时间和空间(TS)坐标信息 通过时空连续体。 该装置还包括固定在动画对象的身体上的生物物理状态传感器,用于自动检测动画对象的生物生理状态,并产生生物生理状态信息,该信息表示该动画对象沿其过程的感测生物生理状态。 无线设备还包括用于通过自由空间发送TS坐标信息和生物生理状态信息的无线日期发送器。 基于TS-冲印的跟踪服务器通过无线方式接收TS坐标信息和生物生理状态信息,并且存储与动画对象沿着其进程移动的信息。 互联网信息服务器提供包含收集的TS坐标和生物生理状态信息的基于因特网的文档。 支持因特网的客户端系统使得授权人员能够查看所提供的基于Internet的文档,并监视所收集的TS坐标和生物物理状态信息,以用于各种目的。
    • 5. 发明申请
    • High Density Three Dimensional Multi-Layer Farming
    • 高密度三维多层农业
    • US20140325908A1
    • 2014-11-06
    • US13887334
    • 2013-05-05
    • Sadeg M. Faris
    • Sadeg M. Faris
    • A01G31/06A01G31/02
    • A01G31/06A01G31/02Y02P60/216
    • In order to achieve food and energy security, while at the same time eliminating the “food vs. biofuel” conflict, a transformational three dimensional multilayer farming, MLF, is presented. This exploits the third dimension. This goal is realizable by the disclosed means and methods to increase the 3D plant productivity, 3D yield, ton/m3/year, using ultra-compact ultra high density vertical structures. Each layer in the MLF system comprises at least one string of SanSSoil Growth Elements, SGEs, each designed to carry out multiple functions essential to sustain plant growth, and constructed in a manner to integrate these functions at low-cost. The networked strings of SGEs in each layer provide near self-sufficiency for growth, and in an integrated MLF system, achieve maximum vertical compactness and highest growth density. The multi-functions of each integrally made SGE include: germination, growth sustenance, localized delivery of nutrients, environment sensing, and localized delivery of illumination.
    • 为了实现食品和能源的安全,同时消除了“食物与生物燃料”的冲突,提出了一个转型三维多层次农业,即MLF。 这利用了第三个维度。 通过公开的手段和方法可以实现这一目标,通过使用超紧凑型超高密度垂直结构提高3D植物生产力,3D产量,吨/ m3 /年。 MLF系统中的每一层都包含至少一串三硫化碳生长元素(SGS),其中每一个都设计用于实现维持植物生长所必需的多种功能,并以低成本整合这些功能的方式构建。 每层SGE的网络连接线为增长提供了近乎自给自足的优势,而在综合MLF系统中,实现了最大的垂直紧凑度和最高的增长密度。 每个整体制作的SGE的多功能包括:发芽,生长维持,营养物质的局部输送,环境感测和​​局部照射。
    • 7. 发明授权
    • Fuel containment and recycling system
    • 燃油遏制和回收系统
    • US07226676B2
    • 2007-06-05
    • US10429935
    • 2003-05-05
    • Sadeg M. FarisTsepin TsaiWenbin YaoYuen-Ming Chang
    • Sadeg M. FarisTsepin TsaiWenbin YaoYuen-Ming Chang
    • H01M8/04H01M2/00H01M2/02
    • H01M6/5011H01M2/40H01M4/02H01M6/5077H01M8/18H01M8/225H01M10/4214H01M12/06H01M2300/0014
    • An energy conversion system, comprising: a reservoir container including at least two chambers of inversely variable volume for respectively storing a quantity of fuel and receiving a quantity of exhaust; a means for decreasing the volume of the first chamber while concurrently increasing the volume of the second chamber; at least one energy conversion device; first means for communicating fuel between the at least one energy conversion device and a first of the chambers in the reservoir container; and second means for communicating exhaust between the at least one energy conversion device and a second of the chambers in the reservoir container. The reservoir container may be transported to a recharging/refilling station or recharged in-situ. A particular application for metal-air fuel cell power systems is shown and described.
    • 一种能量转换系统,包括:容器容器,其包括至少两个反向容积的室,用于分别储存一定量的燃料并接收一定数量的排气; 用于减小第一室的体积同时增加第二室的体积的装置; 至少一个能量转换装置; 用于在所述至少一个能量转换装置和所述储存容器中的所述室中的第一室之间连通燃料的第一装置; 以及用于在所述至少一个能量转换装置和所述储存器容器中的第二室之间连通排气的第二装置。 储存容器可以运送到充电/再填充站或原位充电。 金属 - 空气燃料电池电力系统的特殊应用被显示和描述。