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    • 1. 发明申请
    • Tubular Conveyor Belt
    • 管状输送带
    • US20100018841A1
    • 2010-01-28
    • US12510404
    • 2009-07-28
    • Robin StevenLawrence K. NordellYijin Zhang
    • Robin StevenLawrence K. NordellYijin Zhang
    • B65G15/40
    • B65G15/08B65G15/36B65G15/40
    • A conveyor belt for use in a tubular conveyor belt system has a width and a length, and a longitudinal centerline. The conveyor belt further has a first longitudinal edge, and an opposing second longitudinal edge, wherein during use, the first longitudinal edge and the second longitudinal edge overlap to form an overlap region, thus forming the belt into a tube-like shape. The conveyor belt further has a load bearing region, wherein the load bearing region is located evenly about the belt longitudinal centerline, throughout the length of the belt. Further, there is a first anti-rotation region and a second anti-rotation region, wherein the first anti-rotation region is located between the first longitudinal edge and the load bearing region, and the second anti-rotation region is located between the second longitudinal edge and the load bearing region. The first and second longitudinal edges, and the load bearing region comprise longitudinal reinforcement members, and the first and second anti-rotation regions do not comprise longitudinal reinforcement members.
    • 用于管状输送带系统的输送带具有宽度和长度以及纵向中心线。 传送带还具有第一纵向边缘和相对的第二纵向边缘,其中在使用期间,第一纵向边缘和第二纵向边缘重叠以形成重叠区域,从而将带形成为管状形状。 传送带还具有承载区域,其中负载承载区域在带的纵向中心线周围均匀地位于带的整个长度上。 此外,存在第一防旋转区域和第二防旋转区域,其中第一防旋转区域位于第一纵向边缘和承载区域之间,并且第二防旋转区域位于第二防旋转区域之间 纵向边缘和承载区域。 第一纵向边缘和第二纵向边缘以及承载区域包括纵向加强构件,并且第一和第二防旋转区域不包括纵向加强构件。
    • 2. 发明授权
    • Tubular conveyor belt
    • 管状输送带
    • US07942259B2
    • 2011-05-17
    • US12510404
    • 2009-07-28
    • Robin StevenLawrence K. NordellYijin Zhang
    • Robin StevenLawrence K. NordellYijin Zhang
    • B65G15/08B65G15/40
    • B65G15/08B65G15/36B65G15/40
    • A conveyor belt for use in a tubular conveyor belt system has a width and a length, and a longitudinal centerline. The conveyor belt further has a first longitudinal edge, and an opposing second longitudinal edge, wherein during use, the first longitudinal edge and the second longitudinal edge overlap to form an overlap region, thus forming the belt into a tube-like shape. The conveyor belt further has a load bearing region, wherein the load bearing region is located evenly about the belt longitudinal centerline, throughout the length of the belt. Further, there is a first anti-rotation region and a second anti-rotation region, wherein the first anti-rotation region is located between the first longitudinal edge and the load bearing region, and the second anti-rotation region is located between the second longitudinal edge and the load bearing region. The first and second longitudinal edges, and the load bearing region comprise longitudinal reinforcement members, and the first and second anti-rotation regions do not comprise longitudinal reinforcement members.
    • 用于管状输送带系统的输送带具有宽度和长度以及纵向中心线。 传送带还具有第一纵向边缘和相对的第二纵向边缘,其中在使用期间,第一纵向边缘和第二纵向边缘重叠以形成重叠区域,从而将带形成为管状形状。 传送带还具有承载区域,其中负载承载区域在带的纵向中心线周围均匀地位于带的整个长度上。 此外,存在第一防旋转区域和第二防旋转区域,其中第一防旋转区域位于第一纵向边缘和承载区域之间,并且第二防旋转区域位于第二防旋转区域之间 纵向边缘和承载区域。 第一纵向边缘和第二纵向边缘以及承载区域包括纵向加强构件,并且第一和第二防旋转区域不包括纵向加强构件。
    • 3. 发明申请
    • METHOD AND SYSTEM FOR DETERMINING AND OPTIMIZING THROUGHPUT OF SHORT RANGE WIRELESS NETWORK
    • 用于确定和优化短距离无线网络的方法和系统
    • US20090238163A1
    • 2009-09-24
    • US12412670
    • 2009-03-27
    • Yijin ZhangPingping XuPei Liu
    • Yijin ZhangPingping XuPei Liu
    • H04W4/00
    • H04W24/02H04W28/18H04W74/0808
    • Methods and systems for determining and optimizing a throughput of a short range wireless network are provided. The method mainly includes acquiring respective time parameters in a contention access period based on information transmission characteristics of the short range wireless network; and computing and optimizing the throughput of the short range wireless network based on the respective time parameters. These time parameters are determined based on a non-persistent Carrier Sense Multiple Access CSMA mechanism. Therefore, the present invention employs a non-persistent CSMA mechanism to analyze the CAP of a short range wireless network and thus simplifies complexity in determining the network throughput and the analysis process of network optimization. As such, accurate throughput parameters of the standard network of the short range wireless network may be obtained, the network performance may be optimized and the performance of the short range wireless network is improved.
    • 提供了用于确定和优化短距离无线网络的吞吐量的方法和系统。 该方法主要包括基于短距离无线网络的信息传输特性来获取竞争接入时段中的各个时间参数; 并根据各自的时间参数计算和优化短距离无线网络的吞吐量。 这些时间参数是基于非持久载波侦听多路访问CSMA机制来确定的。 因此,本发明采用非持久性CSMA机制来分析短距离无线网络的CAP,从而简化了确定网络吞吐量和网络优化分析过程的复杂性。 因此,可以获得短距离无线网络的标准网络的精确吞吐量参数,可以优化网络性能并且提供短距离无线网络的性能。
    • 5. 发明授权
    • Method and system for determining and optimizing throughput of short range wireless network
    • 确定和优化短距离无线网络吞吐量的方法和系统
    • US08576876B2
    • 2013-11-05
    • US13482509
    • 2012-05-29
    • Yijin ZhangPingping XuPei Liu
    • Yijin ZhangPingping XuPei Liu
    • H04J3/00
    • H04W24/02H04W28/18H04W74/0808
    • Methods and systems for determining and optimizing a throughput of a short range wireless network are provided. The method mainly includes acquiring respective time parameters in a contention access period based on information transmission characteristics of the short range wireless network; and computing and optimizing the throughput of the short range wireless network based on the respective time parameters. These time parameters are determined based on a non-persistent Carrier Sense Multiple Access CSMA mechanism. Therefore, the present invention employs a non-persistent CSMA mechanism to analyze the CAP of a short range wireless network and thus simplifies complexity in determining the network throughput and the analysis process of network optimization. As such, accurate throughput parameters of the standard network of the short range wireless network may be obtained, the network performance may be optimized and the performance of the short range wireless network is improved.
    • 提供了用于确定和优化短距离无线网络的吞吐量的方法和系统。 该方法主要包括基于短距离无线网络的信息传输特性来获取竞争接入时段中的各个时间参数; 并根据各自的时间参数计算和优化短距离无线网络的吞吐量。 这些时间参数是基于非持久载波侦听多路访问CSMA机制来确定的。 因此,本发明采用非持久性CSMA机制来分析短距离无线网络的CAP,从而简化了确定网络吞吐量和网络优化分析过程的复杂性。 因此,可以获得短距离无线网络的标准网络的精确吞吐量参数,可以优化网络性能并且提供短距离无线网络的性能。
    • 6. 发明申请
    • Method and System for Determining and Optimizing Throughput of Short Range Wireless Network
    • 确定和优化短距离无线网络吞吐量的方法和系统
    • US20120230318A1
    • 2012-09-13
    • US13482509
    • 2012-05-29
    • Yijin ZhangPingping XuPei Liu
    • Yijin ZhangPingping XuPei Liu
    • H04W84/12
    • H04W24/02H04W28/18H04W74/0808
    • Methods and systems for determining and optimizing a throughput of a short range wireless network are provided. The method mainly includes acquiring respective time parameters in a contention access period based on information transmission characteristics of the short range wireless network; and computing and optimizing the throughput of the short range wireless network based on the respective time parameters. These time parameters are determined based on a non-persistent Carrier Sense Multiple Access CSMA mechanism. Therefore, the present invention employs a non-persistent CSMA mechanism to analyze the CAP of a short range wireless network and thus simplifies complexity in determining the network throughput and the analysis process of network optimization. As such, accurate throughput parameters of the standard network of the short range wireless network may be obtained, the network performance may be optimized and the performance of the short range wireless network is improved.
    • 提供了用于确定和优化短距离无线网络的吞吐量的方法和系统。 该方法主要包括基于短距离无线网络的信息传输特性来获取竞争接入时段中的各个时间参数; 并根据各自的时间参数计算和优化短距离无线网络的吞吐量。 这些时间参数是基于非持久载波侦听多路访问CSMA机制来确定的。 因此,本发明采用非持久性CSMA机制来分析短距离无线网络的CAP,从而简化了确定网络吞吐量和网络优化分析过程的复杂性。 因此,可以获得短距离无线网络的标准网络的精确吞吐量参数,可以优化网络性能并且提供短距离无线网络的性能。
    • 7. 发明授权
    • Method and system for determining and optimizing throughput of short range wireless network
    • 确定和优化短距离无线网络吞吐量的方法和系统
    • US08208487B2
    • 2012-06-26
    • US12412670
    • 2009-03-27
    • Yijin ZhangPingping XuPei Liu
    • Yijin ZhangPingping XuPei Liu
    • H04J3/00
    • H04W24/02H04W28/18H04W74/0808
    • Methods and systems for determining and optimizing a throughput of a short range wireless network are provided. The method mainly includes acquiring respective time parameters in a contention access period based on information transmission characteristics of the short range wireless network; and computing and optimizing the throughput of the short range wireless network based on the respective time parameters. These time parameters are determined based on a non-persistent Carrier Sense Multiple Access CSMA mechanism. Therefore, the present invention employs a non-persistent CSMA mechanism to analyze the CAP of a short range wireless network and thus simplifies complexity in determining the network throughput and the analysis process of network optimization. As such, accurate throughput parameters of the standard network of the short range wireless network may be obtained, the network performance may be optimized and the performance of the short range wireless network is improved.
    • 提供了用于确定和优化短距离无线网络的吞吐量的方法和系统。 该方法主要包括基于短距离无线网络的信息传输特性来获取竞争接入时段中的各个时间参数; 并根据各自的时间参数计算和优化短距离无线网络的吞吐量。 这些时间参数是基于非持久载波侦听多路访问CSMA机制来确定的。 因此,本发明采用非持久性CSMA机制来分析短距离无线网络的CAP,从而简化了确定网络吞吐量和网络优化分析过程的复杂性。 因此,可以获得短距离无线网络的标准网络的精确吞吐量参数,可以优化网络性能并且提供短距离无线网络的性能。