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    • 32. 发明授权
    • Tracking area reconfiguration based on sector load
    • 基于扇区负载的跟踪区重新配置
    • US08804566B1
    • 2014-08-12
    • US13558054
    • 2012-07-25
    • Jasinder P. SinghSachin R. VargantwarMaulik K. ShahDeveshkumar Rai
    • Jasinder P. SinghSachin R. VargantwarMaulik K. ShahDeveshkumar Rai
    • G01R31/08
    • H04W60/00
    • A method and corresponding system is provided to help mitigate sector congestion. In one embodiment of the method, a RAN entity evaluates load among sectors of a tracking area and determines that the load is at least a threshold level of load. In response, the RAN entity enlarges the tracking area. In another embodiment of the method, when the RAN entity makes a decision to reconfigure a tracking area, it may consider one or more factors when determining how to reconfigure. In one example, the RAN entity may identify a particular border sector that has at least a threshold level of load or is a border sector in another network. Responsively, the RAN may reconfigure the tracking area such that the identified border sector is no longer a border sector. Other examples are possible.
    • 提供了一种方法和相应的系统来帮助减轻扇区拥塞。 在该方法的一个实施例中,RAN实体评估跟踪区域的扇区之间的负载,并确定负载至少为阈值的负载水平。 作为响应,RAN实体放大跟踪区域。 在该方法的另一个实施例中,当RAN实体作出重新配置跟踪区域的决定时,在确定如何重新配置​​时可以考虑一个或多个因素。 在一个示例中,RAN实体可以标识具有至少一个阈值负载水平或者是另一个网络中的边界扇区的特定边界扇区。 响应地,RAN可以重新配置跟踪区域,使得所识别的边界扇区不再是边界扇区。 其他的例子也是可以的。
    • 33. 发明授权
    • Minimizing adjacent carrier interference by varying the power level of subcarriers
    • 通过改变副载波的功率电平来最小化相邻载波干扰
    • US08767619B1
    • 2014-07-01
    • US13109650
    • 2011-05-17
    • Jasinder P. SinghMaulik K. ShahSiddharth S. OroskarSachin R. Vargantwar
    • Jasinder P. SinghMaulik K. ShahSiddharth S. OroskarSachin R. Vargantwar
    • H04B1/00
    • H04W52/243
    • A radio access network (RAN) may transmit on a plurality of channels, each channel made up of a plurality of subcarriers. Each subcarrier defines a sequence of frames, each frame respectively defining a sequence of time slots. The RAN may transmit symbols in each time slot at at least a nominal power level on each of the subcarriers. The RAN may also determine a subcarrier that is likely to cause adjacent carrier interference between a first wireless device and a second wireless device. The RAN may also transmit null symbols in a first time slot of an initial frame on the determined subcarrier with a power level less than the nominal power level. Additionally the RAN may transmit subsequent symbols with the respective power level of each of the subsequent symbols is successively increased for each subsequent timeslot, for at least the duration of the initial frame.
    • 无线电接入网络(RAN)可以在多个信道上发送由多个子载波组成的每个信道。 每个子载波定义一个帧序列,每个帧分别定义一个时隙序列。 RAN可以在每个子载波上的至少一个标称功率电平的每个时隙中发送符号。 RAN还可以确定可能导致第一无线设备和第二无线设备之间的相邻载波干扰的副载波。 RAN还可以在具有小于额定功率电平的功率电平的所确定的子载波上的初始帧的第一时隙中发送空符号。 此外,RAN可以发送随后的符号,其中每个后续符号的相应功率电平在每个后续时隙中连续增加至少在初始帧的持续时间内。
    • 36. 发明授权
    • Increased wireless communication transmissions in heterogeneous networks
    • 在异构网络中增加无线通信传输
    • US08401481B1
    • 2013-03-19
    • US13075393
    • 2011-03-30
    • Maulik K. ShahSiddharth OroskarManoj ShettySachin R. Vargantwar
    • Maulik K. ShahSiddharth OroskarManoj ShettySachin R. Vargantwar
    • H04B1/00
    • H04W16/32
    • A wireless communication system comprises a macrocell base station and a communication control system, wherein picocell base stations inhibit wireless communications during a first set of time slots and transfer the wireless communications during a second set of the time slots. The macrocell base station is configured to transfer wireless communication signals at a first power level to a plurality of wireless communication devices during the first set of the time slots. The communication control system configured to determine a quantity of the wireless communication devices that are within a distance threshold of the macrocell base station. The macrocell base station is configured to transfer additional wireless communication signals at a second power level during the second set of the time slots to at least some of the wireless communication devices if the quantity exceeds a quantity threshold.
    • 无线通信系统包括宏小区基站和通信控制系统,其中微微小区基站在第一组时隙期间禁止无线通信,并且在第二组时隙期间传送无线通信。 宏小区基站被配置为在第一组时隙期间将第一功率电平的无线通信信号传送到多个无线通信设备。 所述通信控制系统被配置为确定处于所述宏小区基站的距离阈值内的所述无线通信设备的数量。 宏小区基站被配置为如果数量超过量阈值,则在第二组时隙期间将第二功率电平的附加无线通信信号传送到至少一些无线通信设备。
    • 39. 发明授权
    • Wireless frequency changes for wireless communication devices based on tracking area updates
    • 基于跟踪区域更新的无线通信设备的无线频率变化
    • US09055482B1
    • 2015-06-09
    • US13566134
    • 2012-08-03
    • Jasinder Pal SinghSachin R. VargantwarDeveshkumar Narendrapratap RaiMaulik K. Shah
    • Jasinder Pal SinghSachin R. VargantwarDeveshkumar Narendrapratap RaiMaulik K. Shah
    • H04W24/02H04W28/16
    • H04W28/16H04W72/0453H04W72/0486
    • Systems, methods, and software for wireless frequency changes for wireless communication devices based on tracking area updates in wireless communication systems are provided herein. In one example, a method of operating a communication system is provided. The method includes providing wireless access to communication services for wireless communication devices over a first frequency spectrum at a wireless access node, and receiving tracking area updates transferred by ones of the wireless communication devices. The method also includes processing at least a quantity of the tracking area updates received at the wireless access node to determine idle timers for the wireless communication devices, where an expiration of an associated idle timer indicates that an associated wireless communication device can no longer receive the wireless access over the first frequency spectrum and can receive further wireless access over a second frequency spectrum.
    • 本文提供了基于无线通信系统中的跟踪区域更新的用于无线通信设备的无线频率改变的系统,方法和软件。 在一个示例中,提供了一种操作通信系统的方法。 该方法包括:通过无线接入节点的第一频谱向无线通信设备提供无线接入,以及接收由无线通信设备中的一个传送的跟踪区域更新。 该方法还包括处理在无线接入节点处接收到的至少一部分跟踪区域更新,以确定无线通信设备的空闲定时器,其中相关联的空闲定时器的到期指示相关联的无线通信设备不能再接收 通过第一频谱进行无线接入,并且可以在第二频谱上接收进一步的无线接入。