Abstract:
The disclosed embodiments include a method, apparatus, and computer program product for modifying a three-dimensional geocellular model. For example, one disclosed embodiment includes a system that includes at least one processor and at least one memory coupled to the at least one processor. The memory stores instructions that when executed by the at least one processor performs operations that includes gathering network performance information regarding data flow communicated with a client of a network over a plurality of connections utilizing performance information packets; and automatically balancing the data flow of the plurality of connections between access points of the network that are available to the client using connection admission control engines.
Abstract:
Novel tools and techniques are provided for implementing antenna structures to optimize transmission and reception of wireless signals from ground-based signal distribution devices, which include, but are not limited to, cabinets, pedestals, hand holes, and/or network access point platforms. Wireless applications with such devices and systems might include, without limitation, wireless signal transmission and reception in accordance with IEEE 802.11a/b/g/n/ac/ad/af standards, UMTS, CDMA, LTE, PCS, AWS, EAS, BRS, and/or the like. In some embodiments, an antenna might be provided within a signal distribution device, which might include a container disposed in a ground surface. A top portion of the container might be substantially level with a top portion of the ground surface. The antenna might be communicatively coupled to at least one conduit, at least one optical fiber line, at least one conductive signal line, and/or at least one power line via an apical conduit system installed in a roadway.
Abstract:
Novel tools and techniques are provided for implementing antenna structures to optimize transmission and reception of wireless signals from ground-based signal distribution devices, which include, but are not limited to, cabinets, pedestals, hand holes, and/or network access point platforms. Wireless applications with such devices and systems might include, without limitation, wireless signal transmission and reception in accordance with IEEE 802.11a/b/g/n/ac/ad/af standards, UMTS, CDMA, LTE, PCS, AWS, EAS, BRS, and/or the like. In some embodiments, an antenna might be provided within a signal distribution device, which might include a container disposed in a ground surface. A top portion of the container might be substantially level with a top portion of the ground surface. The antenna might be communicatively coupled to at least one conduit, at least one optical fiber line, at least one conductive signal line, and/or at least one power line via an apical conduit system installed in a roadway.
Abstract:
A system and method for controlling communications networks. Network performance information is gathered from a first communications network using performance information packet data packets. A network operator of the first communications network is controlled from a secondary communications network using the performance information packet data packets. Changes to the network operator are implemented based on instructions included in the performance information packet data packets.
Abstract:
Novel tools and techniques are provided for implementing antenna structures to optimize transmission and reception of wireless signals from ground-based signal distribution devices, which include, but are not limited to, pedestals, hand holes, and/or network access point platforms. Wireless applications with such devices and systems might include, without limitation, wireless signal transmission and reception in accordance with IEEE 802.11a/b/g/n/ac/ad/af standards, UMTS, CDMA, LTE, PCS, AWS, EAS, BRS, and/or the like. In some embodiments, an antenna might be provided within a signal distribution device, which might include a container disposed in a ground surface. A top portion of the container might be substantially level with a top portion of the ground surface. The antenna might be communicatively coupled to one or more of at least one conduit, at least one optical fiber, at least one conductive signal line, or at least one power line via the container.
Abstract translation:提供了用于实现天线结构以优化来自地面信号分配设备的无线信号的传输和接收的新型工具和技术,其包括但不限于基座,手孔和/或网络接入点平台。 具有这种设备和系统的无线应用可以包括但不限于根据IEEE 802.11a / b / g / n / ac / ad / af标准,UMTS,CDMA,LTE,PCS,AWS,EAS等的无线信号传输和接收, BRS和/或类似物。 在一些实施例中,天线可以设置在信号分配装置内,其可以包括设置在地面中的容器。 容器的顶部部分可以与地表面的顶部部分基本平齐。 天线可以通过至少一个导管,至少一个光纤,至少一个导电信号线或至少一个电力线通过该容器通信地耦合到一个或多个。
Abstract:
A system and method for provisioning resources of a packet network, including monitoring at least one network performance information parameter associated with communications of data packets. The at least one network performance information parameter(s) may be compared with at least one respective threshold value indicative of degradation of communications of the data packets. A determination may be made that the network performance information parameter(s) crosses the respective threshold value(s). In response to determining that the network performance information parameter(s) crosses the respective threshold value(s), a network resource may be provisioned to compensate for the degradation of communications of the data packets.
Abstract:
A system and method for handling communications requests. Network performance information of a communications network is gathered using PIP data packets to determine a status of a number of nodes of the communications network. Available bandwidth through connections of the communications network are determined based on the PIP data packets. The available bandwidth for a number of customers is allocated for new connections and utilized bandwidth through the connections as the utilized bandwidth changes across the communications network.