Abstract:
The present invention relates to a load. The load can include a perimeter with a first side and a second side, the second side extending substantially parallel to the first side and a plurality of supports extending from the first side to the second side, the supports allowing the load to withstand a lateral compression force suitable to lift the load.
Abstract:
The present invention relates to a transport device for transporting a building. The device includes a first support structure, the first support structure having at least four wheels capable of individual rotation about a vertical axis and a second support structure, the second support structure having at least four wheels capable of individual rotation about a vertical axis. The first support structure and the second support structure are configured to couple together to support and transport the building.
Abstract:
The present invention relates to a transport device for transporting a building. The device includes a first support structure, the first support structure having at least four wheels capable of individual rotation about a vertical axis and a second support structure, the second support structure having at least four wheels capable of individual rotation about a vertical axis. The first support structure and the second support structure are configured to couple together to support and transport the building.
Abstract:
A method and system for synchronization of link layer windows in a wireless communications system is disclosed. At a transmitter in the wireless communications system, the transmitter transmits a plurality of frames in a transmitter's link layer window, wherein each frame comprises segments and sends a request for an acknowledgement of the plurality of frames to a receiver. Then the transmitter determines a last transmitted segment of an eldest frame of the plurality of frames in the transmitter's link layer window, if a response to the request is not received within a specified time period and sets a synchronization indicator in the determined last transmitted segment of the eldest frame. Finally, the transmitter transmits the determined last transmitted segment of the eldest frame with the synchronization indicator set to the receiver.
Abstract:
The present invention relates to a transport device, including a movable structure configured to support and transport a building. At least four drive devices are coupled to the movable structure, each of the at least four drive devices including at least two wheels and at least two motors, each of the being motors adapted to drive one wheel. An input control device is configured to allow an operator to direct the movement of the transport device. The device can include a global positioning receiver. A control system is configured to calculate the desired heading and velocity of the transport device using differential steering based on inputs from the operators and the global positioning receiver.
Abstract:
An apparatus and method for dynamic group prioritization in a communication network includes a first step (400) of defining a dynamic list of group participants by an application, such as a dispatch function. A next step (402) includes sending a request to a Group Management Function, wherein the request includes a requested group priority and the list of group participants. A next step (404) includes allocating a unique identifier to the group and assigning a group priority to the group. A next step (406) includes notifying the application, group participants, and network of the unique identifier and the network of the assigned group priority. The assigned priority of the group and its flows can be dynamically altered in real-time while the group is active.
Abstract:
An apparatus and method for dynamic group prioritization in a communication network includes a first step (400) of defining a dynamic list of group participants by an application, such as a dispatch function. A next step (402) includes sending a request to a Group Management Function, wherein the request includes a requested group priority and the list of group participants. A next step (404) includes allocating a unique identifier to the group and assigning a group priority to the group. A next step (406) includes notifying the application, group participants, and network of the unique identifier and the network of the assigned group priority. The assigned priority of the group and its flows can be dynamically altered in real-time while the group is active.
Abstract:
The present invention relates to a transport device, including a movable structure configured to support and transport a building. At least four drive devices are coupled to the movable structure, each of the at least four drive devices including at least two wheels and at least two motors, each of the being motors adapted to drive one wheel. An input control device is configured to allow an operator to direct the movement of the transport device. The device can include a global positioning receiver. A control system is configured to calculate the desired heading and velocity of the transport device using differential steering based on inputs from the operators and the global positioning receiver.
Abstract:
The present invention relates to a transport device for a load. The transport device includes at least one device configured to alter the orientation of the load relative to at least a portion of the transport device. At least one sensor is adapted to detect if at least one of the following occurs: the portion of the load becomes substantially non-planar and the portion of the load becomes substantially non-level. Electrical components are in communication with the sensor and are adapted to adjust the at least one device such that the portion of the load maintains at least one of the substantial planarity and the substantial levelness.
Abstract:
A method and system for synchronization of link layer windows in a wireless communications system is disclosed. At a transmitter in the wireless communications system, the transmitter transmits a plurality of frames in a transmitter's link layer window, wherein each frame comprises segments and sends a request for an acknowledgement of the plurality of frames to a receiver. Then the transmitter determines a last transmitted segment of an eldest frame of the plurality of frames in the transmitter's link layer window, if a response to the request is not received within a specified time period and sets a synchronization indicator in the determined last transmitted segment of the eldest frame. Finally, the transmitter transmits the determined last transmitted segment of the eldest frame with the synchronization indicator set to the receiver.