Abstract:
A pneumatic tire for high speed driving having a flat ratio of from 0.25 to 0.75, characterized in that the rubber thickness between upper and lower carcass cords is from 120 to 300% of a carcass cord diameter from a crown portion to a shoulder portion.
Abstract:
A mobile communications system is disclosed. The mobile communications system includes a first unit, provided at a base station apparatus, which controls a base station status by determining a request from an upper-layer general base station apparatus; and a second unit, provided at the general base station apparatus, which monitors for one or more mobile station apparatuses entering into/appearing in, or exiting/disappearing from a cell formed by the general base station apparatus, and, if at least one of the mobile station apparatuses enters into/appears in the cell formed by the general base station apparatus, requests for changing the base station apparatus to a service status, and, if all of the mobile station apparatuses exit/disappear from the cell formed by the general base station apparatus, requests for changing the base station apparatus to a radio unit stop status.
Abstract:
A power distribution system includes: a remote electricity monitoring device which is provided at each power supply destination, and remotely reads, via communication means, an consumed power amount and an surplus power amount stored in a power storage device at each supply destination; and a management server which manages the power supply of each supply destination while collecting, via the communication means, the consumed power information and the surplus power information, both of which are read by the remote electricity monitoring device. The management server distributes the power among the supply destinations in line with the relationship between the power amounts based on the consumed power information and surplus power information.
Abstract:
A base station and method of communication of a base station is provided. The base station includes a storage configured to store a predetermined number of base station information, each including a base station ID, an acquisition unit configured to acquire base station IDs, an aggregating unit configured to aggregate a number of times that each of the base station IDs is acquired, and a determination unit configured to determine a priority of each of the base station IDs. The base station also includes a judging unit configured to judge whether or not there is a base station ID having a priority higher than the base station ID stored in the storage, and a manager configured to delete from the storage, and store in the storage, base station information including a base station ID.
Abstract:
In a mobile communication system including a certain user targeted base station (Home eNB), fast cell search and handover are achieved without unnecessary signaling and without increasing interference with other cells. In the mobile communication system, when it is detected that a mobile station permitted to access the certain user targeted base station has entered or exists within a location registration area associated with the certain user targeted base station, connection information including at least frequency information being presently used by the certain user targeted base station and ID information for the certain user targeted base station is transmitted to the mobile station in a dedicated manner. The mobile station performs cell search based on the transmitted connection information. In a preferred embodiment, the mobile station receives adjacent cell frequency information broadcast from a resident public targeted base station and performs the cell search based on the frequency information in the transmitted connection information as well as the adjacent cell frequency information.
Abstract:
Disclosed is a radio base station including: a common control channel transmission unit configured to transmit a common control channel by using radio communications parameter to be assigned to each radio base station; a transmission level determination unit configured to transmit the common control channel according to a predetermined transmission pattern; a reception level supervision unit configured to acquire a reception level of the common control channel received by a mobile station; and an overlap determination unit configured to determine whether or not the predetermined radio communications parameter overlaps with a radio communications parameter used in a different radio base station based on the reception level acquired by the reception level supervision unit and the predetermined transmission pattern.
Abstract:
In a mobile communication system including Home eNBs, information on mobile stations permitted to access each Home eNB can be easily registered, and the permitted mobile stations can be connected to the Home eNB substantially at the same time of the registration of the access permission. In order to control access to a certain user targeted base station, the information on mobile stations permitted to access the certain user targeted base station is supplied to the certain user targeted base station. Then, the information on the access permitted mobile stations is transmitted to a mobile communication management apparatus on a network. The access permitted mobile station registration is stored in the mobile communication management apparatus in association with the certain user targeted base station. When the access permitted mobile station has entered a location registration area covering the certain user targeted base station or exists in the location registration area, the mobile communication management apparatus transmits connection information for the certain user targeted base station to the mobile station.
Abstract:
To provide a base station apparatus that can automatically update the parameters required for radio communication. A pair of identifier for identifying the self station and radio communication parameter is notified to another base station existing in the neighborhood of the self station, and the path loss value between another base station and a mobile station and the pair of identifier and radio communication parameter for another base station is acquired. The pair of identifier and radio communication parameter reported by the self station is set and updated, based on this acquired information. Since it is updated in consideration of the path loss value reported from the mobile station, the parameter can be updated at higher precision.
Abstract:
A pneumatic tire having a rotation direction specified in one direction. The tread surface has a main groove extending on the equatorial plane of the tire, right and left first inclination grooves extending in an inclined manner from the main groove toward the reverse rotation direction of the tire, and right and left second inclination grooves disposed on the opposite sides of the main groove. The right and left second inclination grooves are disposed at symmetrical positions with respect to the equatorial plane of the tire. Blocks are formed on the opposite sides of the main groove by the main groove, right and left first inclination grooves and right and left second inclination grooves. The blocks include right and left first blocks defined by tire rotation direction side portions of the second inclination grooves, main groove and first inclination grooves, and right and left second blocks defined by tire reverse rotation direction side portions of the second inclination grooves, main groove and first inclination grooves. First main groove portions between the right and left first blocks are less in width than second main groove portions between the right and left second blocks.
Abstract:
A pneumatic tire having a rotation direction specified in one direction. The tread surface has a main groove extending on the equatorial plane of the tire, right and left first inclination grooves extending in an inclined manner from the main groove toward the reverse rotation direction of the tire, and right and left second inclination grooves disposed on the opposite sides of the main groove. The right and left second inclination grooves are disposed at symmetrical positions with respect to the equatorial plane of the tire. Blocks are formed on the opposite sides of the main groove by the main groove, right and left first inclination grooves and right and left second inclination grooves. The blocks include right and left first blocks defined by tire rotation direction side portions of the second inclination grooves, main groove and first inclination grooves, and right and left second blocks defined by tire reverse rotation direction side portions of the second inclination grooves, main groove and first inclination grooves. First main groove portions between the right and left first blocks are less in width than second main groove portions between the right and left second blocks.