Abstract:
A radio communication system (1) includes a pico-cell base station (PeNB) which is located in the communication area of a macro-cell base station (MeNB) and the transmission power of which is lower than that of the macro-cell base station (MeNB). For radio resources that can be used as PDSCH, a resource division ratio that is a ratio between unusable PDSCH resources, which cannot be used by the macro-cell base station (MeNB), and usable PDSCH resources, which can be used by the macro-cell base station (MeNB), is decided, and a radio resource is allocated, out of the usable PDSCH resources defined in accordance with the decided resource division ratio, to a radio terminal that is to connect to the macro-cell base station (MeNB). The resource division ratio is decided based on the traffic load of each base station.
Abstract:
Embodiments of the present invention provide a capacity station activation method and system. A coverage station sends activation control information to a capacity station, where the activation control information enables the capacity station to send a pilot signal to a user in a power decreasing manner; receives a pilot signal measurement result from the user; determines, according to the measurement result, a capacity station that needs to be activated to meet a system requirement; and sends activation information to the determined capacity station that needs to be activated. According to the capacity station activation method and system provided by the embodiments of the present invention, the capacity station that needs to be activated can be more accurately determined, transmit power of an activated capacity station can be controlled, and power consumption of an entire system can be reduced.
Abstract:
Certain aspects are directed to a base station router disposed in a distributed antenna system. The base station router includes a backplane and a controller. The backplane can manage an availability of sectors for coverage zones. Each sector can include communication channels to be radiated to mobile devices in the coverage zones and can represent an amount of telecommunication capacity. The controller can respond to a traffic indicator by causing the backplane to redistribute the availability of at least one sector. The sector can be redistributed from a first coverage zone to a second coverage zone.
Abstract:
Redistribution of network capacity in a network having a plurality of base stations is contemplated. The redistribution may include reallocating or otherwise reusing primary channels assigned to the plurality base stations to increase capacity proximate one or more of the base stations. The network capacity may be increased in this manner without having to add new base stations.
Abstract:
Technologies are generally described to provide a distributed scheme that enables a Green-energy Aware and the Latency Aware (GALA) user-base station (BS) associations in wireless networks, whose BSs are powered by both on-grid energy and green energy. According to some examples, the GALA approach may consider traffic delivery latency and green energy generation rate in BSs to determine the user-BS association. The GALA approach may converge to a particular solution, which may reduce the summation of the weighted latency ratios of BSs, while enabling a trade-off between the on-grid power consumption and the average traffic delivery latency.
Abstract:
Radio spectrum trading involves determining available radio spectrum and requestors desiring to lease portions of the available radio spectrum, and for allocating the available spectrum to the requestors. A pricing curve may be set based on historical information and/or requests to lease spectrum. A determination may then be made as to whether an amount of available spectrum is less than or greater than an amount spectrum being requested. If it is determined that the amount of available spectrum is less than the amount of spectrum being requested, then an auction may be conducted for the available spectrum with the initial bid being set based on the pricing curve. If the amount of available spectrum is greater than the amount of spectrum being requested, then the requests may be sorted based on predicted revenue generation and the available spectrum may be allocated in order from highest to lowest revenue generated.
Abstract:
The present invention is directed to an improved operations method for a wireless communication system. The improved business method, operations method, network and system of the present invention includes the steps of delivering cellular services to the mass market, reducing peak capacity, increasing overall capacity utilization, improving capital utilization, providing an “all-you-can-eat” pricing model, and designing capacity based upon where the users live, work, and play.
Abstract:
A macro base station includes a communication prohibited period setting unit of setting an uplink communication prohibited period to a user equipment belonging to the base station, and prohibits an uplink communication from the user equipment to a wireless communication base station per se during the uplink communication prohibited period. The user equipments belonging to the wireless communication base station per se and the second base station are divided into plural groups, and the uplink communication prohibited period is set to different time periods for the respective groups. Thereby, a communication characteristic is prohibited from being deteriorated at the second base station by an interference affected with the second base station separately from the first base station by the user equipment communicating with the first base station in the uplink communication.
Abstract:
A radio communication system (1) includes a pico-cell base station (PeNB) which is located in the communication area of a macro-cell base station (MeNB) and the transmission power of which is lower than that of the macro-cell base station (MeNB). For radio resources that can be used as PDSCH, a resource division ratio that is a ratio between unusable PDSCH resources, which cannot be used by the macro-cell base station (MeNB), and usable PDSCH resources, which can be used by the macro-cell base station (MeNB), is decided, and a radio resource is allocated, out of the usable PDSCH resources defined in accordance with the decided resource division ratio, to a radio terminal that is to connect to the macro-cell base station (MeNB). The resource division ratio is decided based on the traffic load of each base station.
Abstract:
A frequency band setting apparatus and method are provided. The frequency band setting apparatus may include a calculation unit and a control unit. The calculation unit may calculate a basic frequency band of each of a plurality of Access Points (APs), and the control unit may divide a frequency band, which is available to the plurality of APs, into each of the calculated basic frequency bands and a common frequency band.