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    • 2. 发明申请
    • SOLAR POWER PLANT
    • 太阳能发电厂
    • US20120186251A1
    • 2012-07-26
    • US13394695
    • 2010-09-02
    • Michael EpsteinAkiba Segal
    • Michael EpsteinAkiba Segal
    • F03G6/06F24J2/38F24J2/18F24J2/24
    • F03G6/065F22B1/006F24S20/20Y02E10/41Y02E10/46
    • The present invention provides a novel solar steam generator comprising solar steam boiler compartment carrying water surrounding an internal superheater compartment. The boiler compartment is exposed to a first concentrated solar radiation. The boiler compartment is configured and operable to heat water to saturated temperatures and generate saturated steam. The boiler compartment operates as an integrated cavity enclosing the superheater compartment, reducing the thermal losses of the superheater compartment to the outside environment and absorbs most of the thermal losses of the superheater compartment. The internal superheater compartment is exposed to a second concentrated solar radiation and is configured and operable to superheat the saturated steam generated in the boiler compartment. The boiler compartment and the superheater compartment are thus arranged one with respect to the other such that the boiler compartment surrounds the internal superheater compartment.
    • 本发明提供了一种新颖的太阳能蒸汽发生器,其包括围绕内部过热室的太阳能蒸汽锅炉室。 锅炉室暴露于第一次集中的太阳辐射。 锅炉室配置并可操作以将水加热至饱和温度并产生饱和蒸汽。 锅炉隔室作为一个封闭过热器隔间的集成空腔运行,减少了过热器隔室对外部环境的热损失,并吸收了过热器隔室的大部分热损失。 内部过热器室暴露于第二集中的太阳辐射并且被配置和可操作以使在锅炉室产生的饱和蒸汽过热。 因此,锅炉室和过热器室相对于另一个布置成一个,使得锅炉室围绕内部过热室。
    • 3. 发明授权
    • Temporal proximity to verify physical proximity
    • 临时接近验证物理接近度
    • US08107627B2
    • 2012-01-31
    • US12207864
    • 2008-09-10
    • Michael Epstein
    • Michael Epstein
    • H04L9/32G06F21/00
    • H04L9/3271G06F21/10G06F21/554G06F2221/2111H04L63/0492H04L63/10
    • A security system assesses the response time to requests for information to determine whether the responding system is in physical proximity to the requesting system. Generally, physical proximity corresponds to temporal proximity. If the response time indicates a substantial or abnormal lag between request and response, the system assumes that the lag is caused by the request and response having to travel a substantial or abnormal physical distance, or caused by the request being processed to generate a response, rather than being answered by an existing response in the physical possession of a user. If a substantial or abnormal lag is detected, the system is configured to limit subsequent access to protected material by the current user, and/or to notify security personnel of the abnormal response lag.
    • 安全系统评估对请求信息的响应时间,以确定响应系统是否处于物理上靠近请求系统。 通常,物理接近度对应于时间接近度。 如果响应时间指示请求和响应之间的实质或异常滞后,则系统假设延迟是由请求和响应引起的,必须行进大量或异常的物理距离,或者由被处理的请求引起以产生响应, 而不是由用户实际拥有的现有响应来应答。 如果检测到实质或异常滞后,则系统被配置为限制当前用户对受保护材料的后续访问,和/或通知安全人员异常响应滞后。
    • 4. 发明申请
    • CONFIGURABLE SINGLE HANDED VIDEO GAME CONTROLLER
    • 可配置单声道视频游戏控制器
    • US20090054146A1
    • 2009-02-26
    • US12197578
    • 2008-08-25
    • Michael EpsteinBenjamin J. Heckendorn
    • Michael EpsteinBenjamin J. Heckendorn
    • A63F13/02
    • A63F13/22A63F13/06A63F13/24A63F2300/1018
    • A video game controller that can be configured using a set of video game control switch modules for single hand usage (left or right). The controller is comprised of a controller housing having a base receptacle containing circuitry and a top enclosure which contains several module slots in which removable video game control switch modules can to be inserted and connected to the game controller circuitry via a parallel bus. The removable video game control switch modules which contain the game controls themselves, such as analog joysticks and triggers, can be inserted into any module slot allowing a game player to arrange the controller as desired and have a high level of customization on a per-game or per-user basis.
    • 一个视频游戏控制器,可以使用一组视频游戏控制开关模块进行配置,用于单手使用(左侧或右侧)。 控制器包括具有基座容纳电路的控制器壳体和包含多个模块插槽的顶部外壳,其中可移动视频游戏控制开关模块可插入并通过并行总线连接到游戏控制器电路。 将包含游戏控制本身的可移动视频游戏控制开关模块(诸如模拟操纵杆和触发器)插入到任何模块插槽中,使游戏玩家可以根据需要安排控制器,并且在每场游戏中具有高水平的定制 或每个用户的基础。
    • 7. 发明申请
    • Reordered search of media fingerprints
    • 重新搜索媒体指纹
    • US20060288002A1
    • 2006-12-21
    • US10555836
    • 2003-12-05
    • Michael EpsteinRaymond Krasinski
    • Michael EpsteinRaymond Krasinski
    • G06F17/30G06F7/00
    • G06F16/41
    • A method and system effects a search of a large database (190) based on a reordering (130) of the conventional byte-order of multi-byte identifiers that identify elements in a database. The reordering (130) is selected to provide a more uniform distribution of the identifiers in the database. The database is organized and/or sorted (140, 340) based on the reordered bytes forming the identifiers of the elements in the database. By effecting a reordered byte-order search (150, 350) of uniformly distributed identifiers, the likelihood of a mismatch being detected sooner can be expected to increase in most situations, thereby improving the speed of finding a match or exhaustively searching the database.
    • 一种方法和系统基于识别数据库中的元素的多字节标识符的常规字节顺序(130)来对大数据库(190)进行搜索。 选择重新排序(130)以便在数据库中提供更均匀的标识符分布。 基于形成数据库中的元素的标识符的重新排序的字节来组织和/或排序数据库(140,340)。 通过执行均匀分布的标识符的重新排序的字节顺序搜索(150,350),在大多数情况下可以预期更早地检测失配的可能性增加,从而提高找到匹配或穷尽搜索数据库的速度。
    • 9. 发明申请
    • Device and method for detecting localization, monitoring, and identification of living organisms in structures
    • 用于检测结构中活生物体的定位,监测和鉴定的装置和方法
    • US20050168336A1
    • 2005-08-04
    • US11091163
    • 2005-03-28
    • Dimitri DonskoyMichael EpsteinJaime Siegel
    • Dimitri DonskoyMichael EpsteinJaime Siegel
    • G01N22/00G01N33/46G08B1/08H04Q7/00
    • A01M1/026A01M1/24A01M2200/011G01N22/00G01N33/46
    • A device and method for detecting the presence of living organisms in a structure or behind a wall or partition utilizes a microwave or radio-frequency one or more transceivers which generate separate and distinct interrogating signals and receives separate and distinct signals reflected from a structure and living organisms within it. The reflected signals received by each of the transceivers are processed, for instance by a microprocessor, so as to provide output signals that indicate the presence or absence of a living organism in the structure or behind wall or partition. The microprocessor distinguishes and differentiate signals from different living organisms and from false indication of the presence of living organisms, thereby enabling the detection of living organisms despite the existence of motion signals caused by non-living organism motion. Similarly, the device can distinguish between the biological characteristics, such as respiration rates, of targets to determine if the targets are of the type sought, for example, human targets as opposed to pets or insects.
    • 用于检测结构中或墙壁或分隔物后面的生物体的存在的装置和方法利用微波或射频一个或多个收发器,其产生分开且不同的询问信号并且接收从结构和生物反射的分离和不同的信号 生物体内。 由每个收发器接收的反射信号例如由微处理器进行处理,以提供指示在结构中或在墙壁或分区之后存在或不存在活生物体的输出信号。 微处理器区分和区分来自不同生物体的信号,以及生物体存在的虚假指示,从而能够检测活体,尽管存在由非生物体运动引起的运动信号。 类似地,该装置可以区分目标的生物学特征,例如呼吸速率,以确定目标是否是所寻求的类型,例如,与宠物或昆虫相反的人类靶标。
    • 10. 发明申请
    • Device and method for detecting localization, monitoring, and identification of living organisms in structures
    • 用于检测结构中活生物体的定位,监测和鉴定的装置和方法
    • US20050129294A1
    • 2005-06-16
    • US11028396
    • 2005-01-03
    • Dimitri DonskoyMichael EpsteinJaime Siegel
    • Dimitri DonskoyMichael EpsteinJaime Siegel
    • G01N22/00G01N33/46G06K9/00
    • G01N33/46G01N22/00
    • A device and method for detecting the presence of living organisms in a structure or behind a wall or partition utilizes a plurality of transceivers, each of which generates separate and distinct interrogating signals and receives separate and distinct signals reflected from a structure and living organisms within it. The reflected signals received by each of the transceivers are processed, for instance by a microprocessor, so as to provide output signals that indicate the presence or absence of a living organism in the structure or behind wall or partition. The microprocessor distinguishes and differentiate signals from different living organisms and from false indication of the presence of living organisms, thereby enabling the detection of living organisms despite the existence of motion signals caused by non-living organism motion. Similarly, the device can distinguish between the biological characteristics, such as respiration rates, of targets to determine if the targets are of the type sought, for example, human targets as opposed to pets or insects.
    • 一种用于检测结构中或墙壁或隔墙后生物体的存在的装置和方法利用多个收发器,每个收发器产生分开且不同的询问信号,并且接收从其内的结构和生物体反射的分离和不同的信号 。 由每个收发器接收的反射信号例如由微处理器进行处理,以提供指示在结构中或在墙壁或分区之后存在或不存在活生物体的输出信号。 微处理器区分和区分来自不同生物体的信号,以及生物体存在的虚假指示,从而能够检测活体,尽管存在由非生物体运动引起的运动信号。 类似地,该装置可以区分目标的生物学特征,例如呼吸速率,以确定目标是否是所寻求的类型,例如,与宠物或昆虫相反的人类靶标。