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    • 1. 发明授权
    • Facilities management system
    • 设施管理系统
    • US08218738B2
    • 2012-07-10
    • US11866174
    • 2007-10-02
    • Eric John DiethornJon Louis BentleyAnjur Sundaresan KrishnakumarDavid Mandel Weiss
    • Eric John DiethornJon Louis BentleyAnjur Sundaresan KrishnakumarDavid Mandel Weiss
    • H04M11/00
    • H04L12/2827H04L2012/2845
    • A technique is disclosed that enables the managing of environmental conditions within an enterprise workplace and, in doing so, provides an improvement in facilities cost management over some techniques in the prior art. A data-processing system such as a private-branch exchange monitors the workplace by using one or more telephones, or other “telecommunications endpoints” to which the exchange is connected, in the workplace area. The exchange determines whether people are present in the workplace area by monitoring which endpoints are in use. Additionally, the exchange monitors the sounds that are received by the microphones of the endpoints. Based on knowing which endpoints are in use, the exchange generates control signals for the purpose of controlling one or more environmental conditions such as temperature, lighting, and so forth. In some embodiments of the present invention, the exchange examines the audio content of the received signals and bases the control signals on the audio content analyzed.
    • 公开了一种技术,其能够管理企业工作场所内的环境条件,并且在这样做时,提供了在现有技术中的某些技术的设备成本管理方面的改进。 诸如私营交易所交易所之类的数据处理系统通过在工作场所区域中使用一个或多个电话或其他与交换所连接的“电讯端点”监视工作场所。 交流通过监测哪些端点正在使用中来确定人们是否在工作区域中存在。 另外,交换机监视由端点的麦克风接收的声音。 基于知道使用哪些端点,交换机产生用于控制一个或多个环境条件(例如温度,照明等)的控制信号。 在本发明的一些实施例中,交换机检查接收到的信号的音频内容,并将控制信号基于所分析的音频内容。
    • 2. 发明申请
    • Facilities Management System
    • 设施管理系统
    • US20090086940A1
    • 2009-04-02
    • US11866174
    • 2007-10-02
    • Eric John DiethornJon Louis BentleyAnjur Sundaresan KrishnakumarDavid Mandel Weiss
    • Eric John DiethornJon Louis BentleyAnjur Sundaresan KrishnakumarDavid Mandel Weiss
    • H04M11/00H04M3/22
    • H04L12/2827H04L2012/2845
    • A technique is disclosed that enables the managing of environmental conditions within an enterprise workplace and, in doing so, provides an improvement in facilities cost management over some techniques in the prior art. A data-processing system such as a private-branch exchange monitors the workplace by using one or more telephones, or other “telecommunications endpoints” to which the exchange is connected, in the workplace area. The exchange determines whether people are present in the workplace area by monitoring which endpoints are in use. Additionally, the exchange monitors the sounds that are received by the microphones of the endpoints. Based on knowing which endpoints are in use, the exchange generates control signals for the purpose of controlling one or more environmental conditions such as temperature, lighting, and so forth. In some embodiments of the present invention, the exchange examines the audio content of the received signals and bases the control signals on the audio content analyzed.
    • 公开了一种技术,其能够管理企业工作场所内的环境条件,并且在这样做时,提供了在现有技术中的某些技术的设备成本管理方面的改进。 诸如私营交易所交易所之类的数据处理系统通过在工作场所区域中使用一个或多个电话或其他与交换所连接的“电讯端点”监视工作场所。 交流通过监测哪些端点正在使用中来确定人们是否在工作区域中存在。 另外,交换机监视由端点的麦克风接收的声音。 基于知道使用哪些端点,交换机产生用于控制一个或多个环境条件(例如温度,照明等)的控制信号。 在本发明的一些实施例中,交换机检查接收到的信号的音频内容,并将控制信号基于所分析的音频内容。
    • 9. 发明授权
    • Efficient encoding of instrumented data in real-time concurrent systems
    • 仪器化数据在实时并发系统中的高效编码
    • US08356289B2
    • 2013-01-15
    • US12240868
    • 2008-09-29
    • Juan Jenny LiDavid Mandel Weiss
    • Juan Jenny LiDavid Mandel Weiss
    • G06F9/44G06F9/45
    • G06F11/3676
    • A mechanism for encoding and reporting instrumented data is disclosed that requires less storage space and incurs less processor overhead than other methods of the prior art. In accordance with the illustrative embodiment, a bit vector in shared memory corresponds to nodes of a program's control-flow graph that have been instrumented, and the contents of the vector indicate which of these nodes have executed; in addition, character strings in shared memory indicate what file, class, and method each node belongs to. A process that executes concurrently with those of the program under test transmits instrumented data from the shared memory to a database. The illustrative embodiment enables efficient, rapid reporting and storage of instrumented data, and is therefore especially well-suited for run-time analysis of real-time concurrent systems.
    • 公开了一种编码和报告仪器化数据的机制,与现有技术的其它方法相比,其需要较少的存储空间并且导致较少的处理器开销。 根据说明性实施例,共享存储器中的位矢量对应于已经被装配的程序的控制流程图的节点,并且向量的内容指示这些节点中的哪一个已经执行; 此外,共享内存中的字符串表示每个节点所属的文件,类和方法。 与被测程序同时执行的进程将从共享存储器传送到数据库的检测数据。 说明性实施例能够有效,快速地报告和存储仪器化数据,因此特别适用于实时并发系统的运行时分析。
    • 10. 发明授权
    • Off-line program analysis and run-time instrumentation
    • 离线程序分析和运行时仪表
    • US08291399B2
    • 2012-10-16
    • US12056064
    • 2008-03-26
    • Juan Jenny LiDavid Mandel Weiss
    • Juan Jenny LiDavid Mandel Weiss
    • G06F9/45
    • G06F11/3644G06F11/3676
    • A technique is disclosed for determining off-line the number and location of instrumentation probes to be inserted into a program under testing, and subsequently instrumenting the program at run-time based on the off-line analysis. In accordance with the illustrative embodiment, an off-line analyzer first determines instrumentation locations for a program under test in accordance with a method called the Super Nested Block Method. After the instrumentation locations have been determined, a testing/monitoring tool executes the program and a run-time instrumenter in parallel. The run-time instrumenter accordingly inserts probes into the program, removes probes after they have been executed once, and generates and reports information about code coverage based on the probes.
    • 公开了一种用于确定要插入到测试程序中的仪器探针的数量和位置离线的技术,以及随后基于离线分析在运行时对程序进行测试。 根据说明性实施例,离线分析仪首先根据称为超级嵌套块方法的方法确定被测程序的仪表位置。 在确定仪器位置后,测试/监控工具并行执行程序和运行时调试器。 运行时仪器相应地将探针插入程序,在执行一次后将其移除,并根据探针生成和报告有关代码覆盖的信息。