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    • 1. 发明申请
    • LOGICAL / PHYSICAL ADDRESS STATE LIFECYCLE MANAGEMENT
    • 逻辑/物理地位国家生物管理
    • US20130311676A1
    • 2013-11-21
    • US13603388
    • 2012-09-04
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • H04L29/12
    • H04L61/10H04L29/12028H04L61/103H04L63/1433
    • A system and method for managing logical and physical address state lifecycles. A state of unknown can be assigned to an address when the state has not been assigned. The state of the address is changed when communication is targeted to the address. The state can be changed to unfulfilled when the communication includes an address resolution protocol request sent to a device having the address when a time limit for a response to the address resolution protocol request has not expired. The state can be changed to virtual when the communication is received at the address when the state of the address is unfulfilled, and a time limit for responding to the communication expires before a response is sent. The state can be changed to unknown when the state of the address is not unknown, and the address does not participate in the communication within a time limit.
    • 一种用于管理逻辑和物理地址状态生命周期的系统和方法。 当状态未分配时,可以将未知状态分配给地址。 当通信针对地址时,地址的状态会发生变化。 当通信包括发送到具有地址的设备的地址解析协议请求时,当对地址解析协议请求的响应的时间限制未过期时,可以将状态改变为未实现。 当地址的状态未被满足时在地址处接收到通信时,可以将状态改变为虚拟状态,并且响应通信的时间限制在发送响应之前到期。 当地址的状态不知道时,状态可以改变为未知,并且地址在一定期限内不参与通信。
    • 2. 发明授权
    • Logical / physical address state lifecycle management
    • 逻辑/物理地址状态生命周期管理
    • US08260961B1
    • 2012-09-04
    • US10676505
    • 2003-10-01
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • G06F15/16G06F15/173G06F12/16
    • H04L61/10H04L29/12028H04L61/103H04L63/1433
    • A system and method for managing logical and physical address state lifecycles. A state of unknown can be assigned to an address when the state has not been assigned. The state of the address is changed when communication is targeted to the address. The state can be changed to unfulfilled when the communication includes an address resolution protocol request sent to a device having the address when a time limit for a response to the address resolution protocol request has not expired. The state can be changed to virtual when the communication is received at the address when the state of the address is unfulfilled, and a time limit for responding to the communication expires before a response is sent. The state can be changed to unknown when the state of the address is not unknown, and the address does not participate in the communication within a time limit.
    • 一种用于管理逻辑和物理地址状态生命周期的系统和方法。 当状态未分配时,可以将未知状态分配给地址。 当通信针对地址时,地址的状态会发生变化。 当通信包括发送到具有地址的设备的地址解析协议请求时,当对地址解析协议请求的响应的时间限制未过期时,可以将状态改变为未实现。 当地址的状态未被满足时在地址处接收到通信时,可以将状态改变为虚拟状态,并且响应通信的时间限制在发送响应之前到期。 当地址的状态不知道时,状态可以改变为未知,并且地址在一定期限内不参与通信。
    • 3. 发明授权
    • Deterring network incursion
    • 阻止网络入侵
    • US07469418B1
    • 2008-12-23
    • US10676637
    • 2003-10-01
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • G06F11/00
    • H04L63/1441
    • A system, method, and computer-readable medium for deterring network incursion by formulating appropriate responses to attacks. Once an attack is detected, the system may respond in such a manner as to imitate a network device. The system may respond in a manner that provides a high cost to pursue further communication with the system. For example, the system may respond to TCP syn requests and window probes with messages indicating small packet and window sizes. As such, attempts to send packets to the system have a high network and processing cost. An attacking computer running multiple threads may ultimately slow or be disabled as a result of the receiving the responses and attempting to continue to communicate with the system.
    • 一种用于通过制定对攻击的适当响应来阻止网络入侵的系统,方法和计算机可读介质。 一旦检测到攻击,系统可以以模仿网络设备的方式进行响应。 系统可以以提供高成本以追求与系统的进一步通信的方式进行响应。 例如,系统可以对指示小数据包和窗口大小的消息响应TCP ​​syn请求和窗口探测。 因此,向系统发送数据包的尝试具有很高的网络和处理成本。 运行多个线程的攻击计算机可能由于接收到响应并尝试继续与系统通信而最终减慢或被禁用。
    • 4. 发明授权
    • System and method for managing network communications
    • 用于管理网络通信的系统和方法
    • US08819285B1
    • 2014-08-26
    • US10749718
    • 2003-12-31
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • G06F15/16
    • H04L63/0263H04L61/103H04L61/6009H04L63/1441
    • The invention relates to managing network communications packets on a local segment of a network. If an attack on the network segment is detected, the system creates one or more synthetic hardware addresses for substitution with existing hardware address. If this substitution is maintained in address resolution tables, packets sent to or from an attacker may be monitored, managed, dropped, or responded to in a controlled manner while preventing communication with sensitive devices on the local network segment. If a permissible packet is sent to the synthetic hardware address, the packet may be reformulated by a server, workstation, smart router, or security device, among others and sent with the appropriate hardware address. The synthetic hardware address may be a hardware address not associated with a device on the local network segment. For example, the synthetic hardware address may be synthetic MAC address.
    • 本发明涉及在网络的本地分段上管理网络通信分组。 如果检测到对网段的攻击,则系统创建一个或多个合成硬件地址以替代现有的硬件地址。 如果在地址解析表中维护这种替换,那么发送到攻击者或从攻击者发送的数据包可能受到监控,管理,丢弃或以受控的方式响应,同时防止与本地网段上的敏感设备进行通信。 如果允许的分组被发送到合成硬件地址,则分组可以由服务器,工作站,智能路由器或安全设备等重新配置,并且以适当的硬件地址发送。 合成硬件地址可以是与本地网段上的设备无关的硬件地址。 例如,合成硬件地址可以是合成MAC地址。
    • 6. 发明授权
    • Tracking communication for determining device states
    • 跟踪通信以确定设备状态
    • US07506360B1
    • 2009-03-17
    • US10676541
    • 2003-10-01
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • Mark L. WilkinsonRonald J. MillerMichael J. McDaniels
    • H04L9/32
    • H04L61/10H04L29/12028H04L61/103H04L63/1433
    • A system and method for tracking communication for determining device states. Communication between devices is observed and a respective state of at least one device is inferred. The inference is formed without directly communicating with the device. Various states of the devices include unknown, used, unfulfilled, virtual, omitted, and automatic. The respective state of a device is unknown when the observation shows that the device fails to respond to communication. The respective state of the device is unfulfilled when an ARP request comprising a destination address for the device is observed, and the device does not respond to the ARP request prior to expiration of a time limit. The respective state of a device is determined to be virtual when the observation shows that the device received a packet when its respective state was unfulfilled, and the device did not send a reply to the packet within a time limit.
    • 用于跟踪用于确定设备状态的通信的系统和方法。 观察设备之间的通信,并推断至少一个设备的相应状态。 推理是与设备直接通信而形成的。 设备的各种状态包括未知,已使用,未实现,虚拟,省略和自动。 当观察结果显示设备无法响应通信时,设备的相应状态是未知的。 当观察到包含设备的目的地地址的ARP请求时,设备的相应状态未被实现,并且设备在时限期满之前不响应ARP请求。 当观察结果表明设备在其各自的状态未实现时接收到分组时,设备的相应状态被确定为虚拟的,并且设备在时间限制内没有发送对分组的回复。
    • 7. 发明授权
    • Tool and method for holding automotive valves closed during servicing
    • 维修期间保持汽车阀门的工具和方法关闭
    • US4294141A
    • 1981-10-13
    • US89406
    • 1979-10-30
    • Ronald J. Miller
    • Ronald J. Miller
    • B25B11/00B25B27/24B23P19/00
    • B25B11/00B25B27/24Y10T29/5383
    • A tool for engagement with overhead valves to retain them in securely raised positions while working on the valve associated structure to prevent valves from falling into the cylinder when released from such associated structure. The tool has a flexible tube with an inflatable balloon at one end thereof which is projected through a spark plug opening into the combustion chamber and a compressible bulb at the other end of the flexible tube for manually supplying air pressure to said balloon through the tube. The tool includes control valve means for selectively connecting the bulb directly to the balloon for inflating the latter in the combustion chamber to engage the valves and hold them in a raised position and for venting the tube to deflate the balloon and release the valves when the work is complete.
    • 一种用于与顶置阀接合的工具,以在阀相关结构上工作时将其保持在可靠的升高位置,以防止阀从这种相关结构释放时落入气缸。 该工具具有柔性管,其一端具有可膨胀气囊,其通过火花塞开口突出到燃烧室中,并且在柔性管的另一端处具有可压缩的球,用于通过管手动地向所述气囊供应气压。 该工具包括用于选择性地将灯泡直接连接到球囊的控制阀装置,用于在燃烧室中使灯泡充气以接合阀并将其保持在升高位置,并且用于排出管以使气囊放气并在工作时释放阀 做完了。
    • 8. 发明申请
    • JUNCTION BOX EXTENSIONS
    • 接线盒延伸
    • US20150171607A1
    • 2015-06-18
    • US14563379
    • 2014-12-08
    • Ronald J. Miller
    • Ronald J. Miller
    • H02G3/08
    • H02G3/086Y10T29/49947
    • The present disclosure relates to electrical junction box extensions. During the installation of conduit and wiring systems, electrical junction boxes can become overfilled with too many conductors, and may not meet code. Either the junction box must be replaced with a larger box, or a box extension must be attached. However, replacing a junction box wastes time, and junction box extensions are costly, and requires excessive additional inventory. The proposed solution is to attach a second identical, or substantially identical, junction box to the first junction box. Only minor manufacturing modifications to the standard junction boxes are required to employ the disclosed extension methods, and the disclosed methods work for a wide variety of box sizes. Several embodiments are disclosed, each consisting of inexpensive ways to quickly attach and secure two junction boxes together, thereby doubling the available volume.
    • 本公开涉及电接线盒延伸部。 在安装导管和接线系统期间,电接线盒可能会因太多导体而过满,可能不符合代码。 接线盒必须用较大的盒子替换,或者必须连接盒子扩展件。 然而,更换接线盒会浪费时间,接线盒延长是昂贵的,并且需要额外的库存。 所提出的解决方案是将第二相同或基本相同的接线盒连接到第一接线盒。 只需要对标准接线盒进行微小的制造修改来采用所公开的扩展方法,并且所公开的方法适用于各种箱体尺寸。 公开了几个实施例,每个实施例由廉价的方式快速地将两个接线盒连接并固定在一起,从而将可用体积加倍。
    • 10. 发明授权
    • System for tanker entering rendezvous orbit
    • 油轮进入会合轨道的系统
    • US06678587B2
    • 2004-01-13
    • US10080332
    • 2002-02-20
    • Ronald J. Miller
    • Ronald J. Miller
    • G01C2100
    • G08G5/0052G05D1/0202
    • A navigation and guidance computer system using navigation sensors to determine aircraft position, and automatically control the aircraft to fly from an initial position to intercept and follow a crew-selected rendezvous orbit in accordance with Air Traffic Control and military specified rules. It creates maneuvers that result in smooth, efficient motion of the aircraft from an initial position to the execution of a rendezvous orbit. It controls the aircraft by applying commands to the aircraft's autopilot. The system creates the smooth and coordinated maneuvers by considering and anticipating all constraints on the aircraft flight path by creating a single maneuver that is a re-entry maneuver, an over fly maneuver, and a turning maneuver all as a single turn that is contained entirely within the allowable airspace. All maneuvers are created and executed recognizing the turning capability of the aircraft considering allowable bank angles, current wind conditions and true airspeed.
    • 使用导航传感器确定飞机位置的导航和指导计算机系统,并自动控制飞机从初始位置飞行到拦截,并按照空中交通管制和军事指定规则跟随机组选择的会合轨道。 它产生的动作导致飞机从初始位置到执行会合轨道的平稳有效的运动。 它通过向飞机的自动驾驶仪施加命令来控制飞机。 该系统通过考虑和预测飞机飞行路径的所有限制来创造平稳和协调的机动,通过创建一个单独的机动,即重新进入的机动,飞行的机动和转向机动,全部完全包含在一个单一的转弯 在允许的空域内。 所有操作都被创建并执行,以考虑到允许的行程角,当前的风况和真实的空速来考虑飞机的转弯能力。