摘要:
In a method for wireless communication, a receiver receives a first signal at a first radio frequency and determines the reception level of the first signal. The receiver receives data during a reception level of the first signal at the first radio frequency. The receiver decides, based on the determined reception level, whether at least one measurement is to be taken on a second signal transmitted at a second radio frequency. A radio station carries out the method.
摘要:
In a method for wireless communication, a receiver receives a first signal at a first radio frequency and determines the reception level of the first signal. The receiver receives data during a reception level of the first signal at the first radio frequency. The receiver decides, based on the determined reception level, whether at least one measurement is to be taken on a second signal transmitted at a second radio frequency. A radio station carries out the method.
摘要:
A first network radio station communicates with a user station with the aid of first radio technology while a second network radio station simultaneously communicates using second radio technology, receives data on radio technologies that can be utilized by the user station, and performs a reconfiguration process allowing the second network radio station to utilize the first radio technology. The second network radio station then communicates with the user station with the aid of the first radio technology.
摘要:
A method of selecting suitable frequency bands for data transmission between a network node and a user equipment within a mobile communications network. A method selects suitable frequency bands for data transmission between a network node and user equipment within a mobile communications network. A scheduler on the network node side selects data transmission mode depending on the user equipment capability of receiving data from at least two frequency bands simultaneously. The scheduler preferably selects the data transmission mode in the following way: simultaneous data transmission over at least two frequency with or without splitting traffic data or data transmission over only one available frequency band. For data transmission, a radio frame structure (Big MAC element) is dynamically established in the so-called medium access control layer, shortened so-called MAC-layer, by using concurrent radio resources from other frequency bands or other radio access technologies.
摘要翻译:一种在移动通信网络内为网络节点和用户设备之间的数据传输选择合适的频带的方法。 一种方法选择用于在移动通信网络内的网络节点和用户设备之间进行数据传输的合适频带。 网络节点侧的调度器根据从至少两个频带同时接收数据的用户设备能力来选择数据发送模式。 调度器优选地以如下方式选择数据传输模式:通过至少两个频率同时进行数据传输,具有或不分割业务数据或仅在一个可用频带上的数据传输。 对于数据传输,通过使用来自其他频带或其他无线电接入技术的并发无线电资源,在所谓的媒体接入控制层(即所谓的MAC层)中动态建立无线帧结构(Big MAC element)。
摘要:
A method of selecting suitable frequency bands for data transmission between a network node and a user equipment within a mobile communications network. A method selects suitable frequency bands for data transmission between a network node and user equipment within a mobile communications network. A scheduler on the network node side selects data transmission mode depending on the user equipment capability of receiving data from at least two frequency bands simultaneously. The scheduler preferably selects the data transmission mode in the following way: simultaneous data transmission over at least two frequency with or without splitting traffic data or data transmission over only one available frequency band. For data transmission, a radio frame structure (Big MAC element) is dynamically established in the so-called medium access control layer, shortened so-called MAC-layer, by using concurrent radio resources from other frequency bands or other radio access technologies.
摘要翻译:一种在移动通信网络内为网络节点和用户设备之间的数据传输选择合适的频带的方法。 一种方法选择用于在移动通信网络内的网络节点和用户设备之间进行数据传输的合适频带。 网络节点侧的调度器根据从至少两个频带同时接收数据的用户设备能力来选择数据发送模式。 调度器优选地以如下方式选择数据传输模式:通过至少两个频率同时进行数据传输,具有或不分割业务数据或仅在一个可用频带上的数据传输。 对于数据传输,通过使用来自其他频带或其他无线电接入技术的并发无线电资源,在所谓的媒体接入控制层(即所谓的MAC层)中动态建立无线帧结构(Big MAC element)。
摘要:
In a method for establishment of a connection in a radio communication system, a user terminal selects an operator, based on information on at least one operator of a radio communication system in a country-specific pilot channel, selects a radio communication system based on information on at least one radio communication system in an operator-specific pilot channel for the selected operator and carries out an access to the selected radio communication system for establishment of a connection.
摘要:
According to the inventive method for transmission of organizational information (info) to at the least two communication systems in a channel (CPC) via a radio interface, the channel (CPC) transmitting in a targeted manner and the transmitted organizational information is chosen depending on the direction of the transmission.
摘要:
According to the method for transmission of organizational information to at the least two communication systems in a channel via a radio interface, the channel transmitting in a targeted manner and the transmitted organizational information is chosen depending on the direction of the transmission.
摘要:
In a method for establishment of a connection in a radio communication system, a user terminal selects an operator, based on information on at least one operator of a radio communication system in a country-specific pilot channel, selects a radio communication system based on information on at least one radio communication system in an operator-specific pilot channel for the selected operator and carries out an access to the selected radio communication system for establishment of a connection.
摘要:
A number of subscriber stations use a random access channel in an uncoordinated manner and transmit signals in the channel at a transmission power level which is set on the basis of a random principle. Deterministic transmission power level control is replaced by stochastic transmission power level control. For repeated transmission from two subscriber stations, it is improbable that both will once again transmit at the same transmission power level. If collisions occur between two transmissions which do not now have the same received power level at the base station, then, providing the power level difference is sufficient, at least the more powerful signal can be evaluated (capture effect) and only the transmission of the weaker power level signal need be repeated. Thus, on average, this reduces the delay before successful reception of the transmissions.