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    • 1. 发明授权
    • Improvements wireless sensor networks
    • US09681492B2
    • 2017-06-13
    • US13254069
    • 2010-02-04
    • Saied AbediHind Chebbo
    • Saied AbediHind Chebbo
    • H04L12/26H04W84/18H04W72/10H04W72/12G06F19/00
    • H04W84/18G06F19/00G06F19/3418G16H40/63H04W72/10H04W72/12
    • A method of allocating resources in a wireless sensor network, the network having functions including medical monitoring of a patient using multiple network devices having sensors, the method including steps of: sensing, by a network device in the network, a life parameter of the patient; recognizing the existence of an emergency condition with respect to the parameter; the network device sending a request for streaming towards a coordinator of the network; the coordinator receiving (S12) the request along with any other requests from other devices in the network; and the coordinator granting (S14, S16) each the request by scheduling one of: a streaming allocation with highest priority for a network device which is in an emergency condition; a streaming allocation of medium priority for a network device sensing a life parameter which is not in an emergency condition; and a streaming allocation of lowest priority for a network device which is not sensing any life parameter of the patient and which is not in an emergency condition. The emergency condition may be defined with respect to one or more medical parameters of the patient. The method may be applied, for example, to monitoring of patients in a hospital using MBANs operating in accordance with IEEE 802.15.6.
    • 2. 发明申请
    • Communications Systems
    • 通信系统
    • US20120184310A1
    • 2012-07-19
    • US13434325
    • 2012-03-29
    • Saied ABEDI
    • Saied ABEDI
    • H04B15/00H04W24/00
    • H04W16/14
    • A method of controlling spectrum use in a first wireless communications system, the first wireless communications system being operable to take part in a spectrum assignment process involving at least the first wireless communications system and one or more other wireless communications systems, the method comprising in a single instance of the spectrum assignment process, exchanging a first portion of spectrum for a second, different portion of spectrum, by assigning the first portion of spectrum from the first wireless communications system to the one or more other wireless communications systems and accepting the assignment of the second portion of spectrum from the one or more other wireless communications systems to the first wireless communications system.
    • 一种控制第一无线通信系统中的频谱使用的方法,所述第一无线通信系统可操作以参与涉及至少所述第一无线通信系统和一个或多个其它无线通信系统的频谱分配过程,所述方法包括: 通过将频谱的第一部分从第一无线通信系统分配给一个或多个其它无线通信系统,并且接受频谱分配处理的第一部分, 从所述一个或多个其他无线通信系统到所述第一无线通信系统的频谱的第二部分。
    • 3. 发明授权
    • Virtually centralized uplink scheduling
    • 几乎集中的上行调度
    • US08160005B2
    • 2012-04-17
    • US12646044
    • 2009-12-23
    • Saied Abedi
    • Saied Abedi
    • H04W4/00H04W72/00H04B7/216H04J3/24
    • H04W72/1278H04W72/1268
    • A method of scheduling uplink transmissions from a plurality of source user equipments to a base station is disclosed. The method comprises the steps of determining the amount of data in the data buffer of each of the user equipments, comparing the amount of data in the data buffers of the user equipments to obtain, for each user equipment, a relative indicator, the relative indicator indicating how full that user equipment's data buffer is in comparison to the data buffers of the other user equipments, and scheduling uplink transmissions in dependence on the relative indicators. In this way, each user equipment is given some knowledge of the state of the buffer in the other user equipments. The user equipments are therefore able to make more efficient scheduling decisions. This can improve the throughput and give lower packet delivery delays.
    • 公开了一种从多个源用户设备向基站调度上行链路传输的方法。 该方法包括以下步骤:确定每个用户设备的数据缓冲器中的数据量,比较用户设备的数据缓冲器中的数据量,以便为每个用户设备获得相对指标,相对指标 指示用户设备的数据缓冲器与其他用户设备的数据缓冲器相比如何充分,并且根据相对指标来调度上行链路传输。 以这种方式,给每个用户设备了解其他用户设备中的缓冲器的状态。 因此,用户设备能够进行更有效的调度决策。 这可以提高吞吐量并降低分组传送延迟。
    • 5. 发明申请
    • TO SHORT-RANGE WIRELESS NETWORKS
    • 短距离无线网络
    • US20120057486A1
    • 2012-03-08
    • US13254088
    • 2010-02-09
    • Saied AbediHind Chebbo
    • Saied AbediHind Chebbo
    • H04W24/00
    • H04W84/18H04W52/0216H04W52/0219Y02D70/142Y02D70/144Y02D70/26
    • A wireless sensor network of devices including a sensor and a coordinator: the sensor comprising sensing means operable to detect values of a parameter; transmission and reception means for wireless communication with other devices in the network; and sensor control means operable to control a sleep pattern of the sensor; and the coordinator comprising transmission and reception means for wireless communication with other devices in the network; wherein the sensor transmission means is operable to transmit value information as to the parameter values and the coordinator transmission means is operable to transmit an indication of a suitable sensor sleep pattern taking into account the value information.
    • 一种包括传感器和协调器的设备的无线传感器网络:所述传感器包括可操作以检测参数值的感测装置; 用于与网络中的其他设备进行无线通信的发送和接收装置; 以及可操作以控制所述传感器的睡眠模式的传感器控制装置; 所述协调器包括用于与所述网络中的其他设备进行无线通信的发送和接收装置; 其中所述传感器传输装置可操作以传送关于所述参数值的值信息,并且所述协调器传输装置可操作以在考虑到所述值信息的情况下发送适合的传感器睡眠模式的指示。
    • 6. 发明授权
    • Method and apparatus for packet scheduling
    • 分组调度的方法和装置
    • US07719973B2
    • 2010-05-18
    • US11183239
    • 2005-07-15
    • Saied Abedi
    • Saied Abedi
    • H04L29/02
    • H04L47/14H04L47/2425H04L47/50H04L47/52H04L47/623H04L47/626H04W72/1226
    • Packet scheduling apparatus schedules packets of data for transmission from a transmitter such as a Note B to a plurality of receivers such as a plurality of UEs via at least one channel, for example in a high-speed downlink packet access system (HSDPA). A first measures producing unit produces first measures of scheduling performance in at least two different aspects. A decision unit employs a weighted combination of the first measures to decide the receiver(s) to which packets are to be transmitted. The weighted combination is produced by combining the first measures according to respective corresponding weights. A second measures producing unit produces at least one second measure of scheduling performance. A classifying unit classifies the weights for the or each second measure into at least two different classes of weights according to a probable influence the weight is expected to have on the second measure concerned. A weight adapting unit employs the or each second measure, together with the classification of the weights for the or each second measure, to adapt the weights.
    • 分组调度装置通过例如高速下行链路分组接入系统(HSDPA)中的至少一个信道来调度用于从诸如注释B的发射机发送的数据分组到诸如多个UE的多个接收机。 第一个测量生产单元在至少两个不同方面产生调度性能的第一措施。 决策单元采用第一措施的加权组合来决定要发送分组的接收机。 通过组合根据各自对应权重的第一措施来产生加权组合。 第二措施生产单元产生调度性能的至少一个第二测量。 分类单元根据预期对所涉及的第二个措施的重量的可能影响,将该或每个第二测量的权重分类为至少两个不同类别的权重。 重量适应单元采用或每个第二测量以及该或每个第二测量的权重分类来适应重量。
    • 8. 发明申请
    • Virtually Centralized Uplink Scheduling
    • 实际集中上行调度
    • US20100098017A1
    • 2010-04-22
    • US12646035
    • 2009-12-23
    • Saied Abedi
    • Saied Abedi
    • H04W72/12
    • H04W72/1278H04W72/1268
    • A method of scheduling uplink transmissions from a plurality of source user equipments to a base station is disclosed. The method comprises the steps of determining the amount of data in the data buffer of each of the user equipments, comparing the amount of data in the data buffers of the user equipments to obtain, for each user equipment, a relative indicator, the relative indicator indicating how full that user equipment's data buffer is in comparison to the data buffers of the other user equipments, and scheduling uplink transmissions in dependence on the relative indicators. In this way, each user equipment is given some knowledge of the state of the buffer in the other user equipments. The user equipments are therefore able to make more efficient scheduling decisions. This can improve the throughput and give lower packet delivery delays.
    • 公开了一种从多个源用户设备向基站调度上行链路传输的方法。 该方法包括以下步骤:确定每个用户设备的数据缓冲器中的数据量,比较用户设备的数据缓冲器中的数据量,以便为每个用户设备获得相对指标,相对指标 指示用户设备的数据缓冲器与其他用户设备的数据缓冲器相比如何充分,并且根据相对指标来调度上行链路传输。 以这种方式,给每个用户设备了解其他用户设备中的缓冲器的状态。 因此,用户设备能够进行更有效的调度决策。 这可以提高吞吐量并降低分组传送延迟。
    • 9. 发明申请
    • Communication Systems
    • 通讯系统
    • US20090163221A1
    • 2009-06-25
    • US12335848
    • 2008-12-16
    • Saied ABEDI
    • Saied ABEDI
    • H04W72/00
    • H04W16/10H04W16/14H04W72/0453H04W72/082
    • A spectrum-assignment method for use in a wireless communication system, the system comprising at least first and second communication apparatuses each having a portion of communication spectrum pre-assigned to it for communication, the method comprising: on a dynamic basis, controlling re-assignments of said spectrum between the first and second communication apparatuses in dependence upon spectrum requirements of those apparatuses and at least one indicator indicative of interference expected to result from such re-assignments, so as to tend to improve spectrum utilization between the first and second communication apparatuses.
    • 一种在无线通信系统中使用的频谱分配方法,所述系统至少包括第一和第二通信装置,每个通信装置具有预先分配给其进行通信的通信频谱的一部分,所述方法包括:在动态基础上, 根据这些装置的频谱要求和指示预期由这种重新分配产生的干扰的至少一个指标,分配第一和第二通信装置之间的所述频谱,以便倾向于改善第一和第二通信之间的频谱利用 设备。