Abstract:
A system for communicating wireless signals between one or more sector controllers (SC) and one or more subscriber stations (SS) using different channels and different beams, wherein each of the one or more SS and the SC has a corresponding highly directional antenna; the one or more SC comprises a first SC; the one or more SS comprises a first SS; the first SS obtains network topology awareness (NTA) data from the first SC; the first SS selects a channel, a beam, and one of the one or more SC to establish an RF link based on the NTA data; and the first SS communicating with the selected SC using the established RF link.
Abstract:
A system for communicating wireless signals between one or more sector controllers (SC) and one or more subscriber stations (SS) using different channels and different beams, wherein each of the one or more SS and the SC has a corresponding highly directional antenna; the one or more SC comprises a first SC; the one or more SS comprises a first SS; the first SS obtains network topology awareness (NTA) data from the first SC; the first SS selects a channel, a beam, and one of the one or more SC to establish an RF link based on the NTA data; and the first SS communicating with the selected SC using the established RF link.
Abstract:
A system for communicating wireless signals between one or more sector controllers (SC) and one or more subscriber stations (SS) using different channels and different beams, wherein each of the one or more SS and the SC has a corresponding highly directional antenna; the one or more SC comprises a first SC; the one or more SS comprises a first SS; the first SS obtains network topology awareness (NTA) data from the first SC; the first SS selects a channel, a beam, and one of the one or more SC to establish an RF link based on the NTA data; and the first SS communicating with the selected SC using the established RF link.
Abstract:
A wireless communications system comprises a sector controller that includes a wireless transmitter, and a mobile subscriber station that includes a wireless receiver, and a memory. The wireless transmitter continuously transmitting frames. Each frame comprising a control field and the control field comprising a portion of an encryption certificate associated with the sector controller. The wireless receiver receives each frame and extracts the portion of the encryption certificate and stores the portion of an encryption certificate in the memory. The mobile subscriber station combines the portions of the encryption certificate stored in the memory and verifies that a complete encryption certificate has been received. After this the mobile subscriber station transmits its encryption certificate to the sector controller. The encryption certificates are based on an elliptic curve digital signature algorithm.
Abstract:
A cylindrical-shaped enclosure having tapered ends. The enclosure includes a module having a radio disposed on a printed circuit board and an antenna connected to the PCB. The enclosure has a main piece coupled to a lower piece and to a top piece, an optionally a fourth piece coupled to the top piece. A mounting subsystem is mounted to the main piece and includes a hole configured to receive therethrough a wires that connect to the printed circuit board. The antenna is configured to rotate about an axis that extends along a longest dimension of the enclosure. The module includes a metal plate to which the antenna is directly mechanically and electrically coupled without any cable such that the wires lack any control signals for controlling the antenna. The top and/or lower pieces can house any combination of a camera, an environmental sensor, security equipment, or a lighting system.
Abstract:
A cylindrical-shaped enclosure having tapered ends. The enclosure includes a module having a radio disposed on a printed circuit board and an antenna connected to the PCB. The enclosure has a main piece coupled to a lower piece and to a top piece, an optionally a fourth piece coupled to the top piece. A mounting subsystem is mounted to the main piece and includes a hole configured to receive therethrough a wires that connect to the printed circuit board. The antenna is configured to rotate about an axis that extends along a longest dimension of the enclosure. The module includes a metal plate to which the antenna is directly mechanically and electrically coupled without any cable such that the wires lack any control signals for controlling the antenna. The top and/or lower pieces can house any combination of a camera, an environmental sensor, security equipment, or a lighting system.
Abstract:
A cylindrical-shaped enclosure having tapered ends. The enclosure includes a module having a radio disposed on a printed circuit board and an antenna connected to the PCB. The enclosure has a main piece coupled to a lower piece and to a top piece, an optionally a fourth piece coupled to the top piece. A mounting subsystem is mounted to the main piece and includes a hole configured to receive therethrough a wires that connect to the printed circuit board. The antenna is configured to rotate about an axis that extends along a longest dimension of the enclosure. The module includes a metal plate to which the antenna is directly mechanically and electrically coupled without any cable such that the wires lack any control signals for controlling the antenna. The top and/or lower pieces can house any combination of a a camera, an environmental sensor, security equipment, or a lighting system.
Abstract:
A wireless device comprises a transmitter chain receiving a transmit signal from a UE. The transmitter chain amplifies the transmit signal to produce an amplified transmit signal that is transmitted to a BS. A receiver chain receives a receive signal from the BS. The receiver chain amplifies the receive signal to produce an amplified receive signal which is transmitted to the UE. A second receiver chain receives a second receive signal from the BS. The second receiver chain amplifies the second receive signal to produce a second amplified receive signal that is transmitted to the UE. The gain of the transmitter chain, the receive gain and the second receive chain are balanced. The transmitter chain, the receiver chain, and the second receiver chain each comprise a transmit variable attenuator, with gains set by a controller.
Abstract:
A wireless communications system comprises a sector controller that includes a wireless transmitter, and a mobile subscriber station that includes a wireless receiver, and a memory. The wireless transmitter continuously transmitting frames. Each frame comprising a control field and the control field comprising a portion of an encryption certificate associated with the sector controller. The wireless receiver receives each frame and extracts the portion of the encryption certificate and stores the portion of an encryption certificate in the memory. The mobile subscriber station combines the portions of the encryption certificate stored in the memory and verifies that a complete encryption certificate has been received. After this the mobile subscriber station transmits its encryption certificate to the sector controller. The encryption certificates are based on an elliptic curve digital signature algorithm.
Abstract:
A system for communicating wireless signals between one or more sector controllers (SC) and one or more subscriber stations (SS) using different channels and different beams, wherein each of the one or more SS and the SC has a corresponding highly directional antenna; the one or more SC comprises a first SC; the one or more SS comprises a first SS; the first SS obtains network topology awareness (NTA) data from the first SC; the first SS selects a channel, a beam, and one of the one or more SC to establish an RF link based on the NTA data; and the first SS communicating with the selected SC using the established RF link.