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    • 2. 发明授权
    • Methods and apparatus for using water use signatures and water pressure in improving water use efficiency
    • 用水签名和水压提高用水效率的方法和装置
    • US07330796B2
    • 2008-02-12
    • US11217252
    • 2005-08-31
    • John W. AddinkSylvan AddinkTony Givargis
    • John W. AddinkSylvan AddinkTony Givargis
    • G01F1/00
    • G01M3/2807E03B7/071G01F15/06G01F15/063G01F15/0755G01M3/2815Y02A20/15
    • A method to identify a water flow anomaly in a system having first and second water using devices to generate baseline data that preferably has water use signatures and corresponding water pressure information regarding the water using devices; comparing the baseline data with actual water usage signatures and corresponding actual water pressure information to identify a flow anomaly with the water using devices; and providing information on the flow anomaly to an individual. It is especially contemplated that baseline data are generated for multiple devices coupled to a common water supply system, with baseline data from two or more water using devices compared against future water use patterns of the same devices. Apparatus to accomplish these tasks is preferably housed in an irrigation controller, which may be advantageously coupled to a flow meter.
    • 一种用于识别具有第一和第二水使用装置的系统中的水流异常的方法,用于产生优选具有关于水使用装置的水使用签名和相应的水压信息的基准数据; 将基准数据与实际用水量签名和相应的实际水压信息进行比较,以识别使用水的装置的流量异常; 并向个人提供关于流量异常的信息。 特别考虑的是,为耦合到公共供水系统的多个设备生成基线数据,其中来自两个或更多个使用水的设备的基准数据与相同设备的未来用水模式进行比较。 完成这些任务的装置优选地容纳在冲洗控制器中,其可以有利地联接到流量计。
    • 3. 发明申请
    • Methods and apparatus for using water use signatures and water pressure in improving water use efficiency
    • 用水签名和水压提高用水效率的方法和装置
    • US20060009928A1
    • 2006-01-12
    • US11217252
    • 2005-08-31
    • John AddinkSylvan AddinkTony Givargis
    • John AddinkSylvan AddinkTony Givargis
    • G01F13/00
    • G01M3/2807E03B7/071G01F15/06G01F15/063G01F15/0755G01M3/2815Y02A20/15
    • A method is provided for identifying a flow anomaly in a system having first and second water using devices, comprising: generating baseline data comprising water use signatures and corresponding water pressure information regarding the water using devices; comparing the baseline data with actual water usage signatures and corresponding actual water pressure information to identify a flow anomaly with the water using devices; and providing information on the flow anomaly to an individual. It is especially contemplated that baseline data are generated for multiple devices coupled to a common water supply system, with baseline data from two or more water using devices compared against future water use patterns of the same devices. Apparatus to accomplish these tasks is preferably housed in an irrigation controller, which may be advantageously coupled to a flow meter.
    • 提供了一种用于识别具有第一和第二水分使用装置的系统中的流量异常的方法,包括:产生包括用水签名的基准数据和关于水使用装置的相应的水压信息; 将基准数据与实际用水量签名和相应的实际水压信息进行比较,以识别使用水的装置的流量异常; 并向个人提供关于流量异常的信息。 特别考虑的是,为耦合到公共供水系统的多个设备生成基线数据,其中来自两个或更多个使用水的设备的基准数据与相同设备的未来用水模式进行比较。 完成这些任务的装置优选地容纳在冲洗控制器中,其可以有利地联接到流量计。
    • 5. 发明授权
    • Two tire irrigation valve controller
    • 两个轮胎灌溉阀控制器
    • US06812826B2
    • 2004-11-02
    • US10009868
    • 2001-12-11
    • Kirk BuhlerTony Givargis
    • Kirk BuhlerTony Givargis
    • H04M1104
    • H04M11/007Y10S239/15
    • An irrigation controller provides a current to operate an irrigation valve assembly and superimposes a data stream on the current. The current may be either alternating current or direct current. Preferably the current is transmitted over a two-wire link. The irrigation valve assembly includes a decoder, a solenoid and an irrigation valve. It is contemplated that the decoder will communicate bi-directionally with the irrigation controller. The data stream will be an encoded control signal that is sent at a rate greater than 1 byte per second. Additionally, the encoded control signal may be sent at a rate greater than or less than the rate of the current.
    • 灌溉控制器提供电流来操作冲洗阀组件并将数据流叠加在电流上。 电流可以是交流电流或直流电流。 优选地,电流通过双线链路传输。 冲洗阀组件包括解码器,螺线管和冲洗阀。 预期解码器将与灌溉控制器双向通信。 数据流将是以每秒大于1字节的速率发送的编码控制信号。 此外,可以以大于或小于电流速率的速率发送编码的控制信号。
    • 6. 发明授权
    • Detecting weather sensor malfunctions
    • 检测天气传感器故障
    • US06714134B2
    • 2004-03-30
    • US09764033
    • 2001-01-16
    • John AddinkTony Givargis
    • John AddinkTony Givargis
    • G01W100
    • G01W1/10
    • The present invention provides a warning system comprising: a weather measuring device that measures a current weather condition; and a storage device that stores historical weather data; a microprocessor that is programmed to receive the current weather data from the weather measuring device, compare the current weather data to the historical weather data, generate a warning signal if the current weather data varies from the historical weather data by at least a given amount, and send the warning signal to an individual.
    • 本发明提供一种警报系统,包括:测量当前天气状况的气象测量装置; 和存储历史天气数据的存储装置; 被编程为从天气测量装置接收当前天气数据的微处理器,将当前天气数据与历史天气数据进行比较,如果当前天气数据与历史天气数据不同至少给定量,则产生警告信号, 并向个人发送警告信号。
    • 7. 发明授权
    • Phantom serializing compiler and method of operation of same
    • Phantom序列化编译器和操作方法相同
    • US07886283B2
    • 2011-02-08
    • US11227781
    • 2005-09-14
    • Andre NaculTony Givargis
    • Andre NaculTony Givargis
    • G06F9/45
    • G06F8/456
    • An alternative to a real time operating system (RTOS) is provided based on serializing compilers. A serializing compiler can transform a multitasking application into an equivalent and optimized monolithic sequential code, to be compiled with the embedded processor's native optimizing compiler, effectively filling the RTOS gap. The serializing compiler can analyze the tasks at compile time and generate a fine-tuned, application specific infrastructure to support multitasking, resulting in a more efficient executable than one that is intended to run on top of a generic RTOS. By having control over the application execution and context switches, the serializing compiler enables the fine grain control of task timing while enhancing overall performance. The serializing compiler technology strengthens existing compilers, making them timing and task-aware. The Phantom compiler provides a fully automated mechanism to synthesize a single threaded, ANSI C/C++ program from a multithreaded C/C++ (extended with POSIX) program.
    • 基于序列化编译器提供了实时操作系统(RTOS)的替代方案。 序列化编译器可以将多任务应用程序转换为等效和优化的单片序列代码,以便使用嵌入式处理器的本机优化编译器进行编译,从而有效填补RTOS差距。 序列化编译器可以在编译时分析任务,并生成一个微调的,特定于应用程序的基础架构,以支持多任务处理,从而实现比在通用RTOS之上运行的可执行文件更高效的可执行文件。 通过控制应用程序执行和上下文切换,序列化编译器可以实现对任务定时的细粒度控制,同时提高整体性能。 序列化编译器技术加强了现有的编译器,使其具有时序和任务感知能力。 Phantom编译器提供了一个完全自动化的机制,用于从多线程C / C ++(扩展为POSIX)程序中合成单线程ANSI C / C ++程序。
    • 8. 发明申请
    • Transmitting data via Caller-ID information
    • 通过来电显示信息发送数据
    • US20060115063A1
    • 2006-06-01
    • US11001981
    • 2004-12-01
    • Tony Givargis
    • Tony Givargis
    • H04M1/56H04M11/00
    • H04M1/575
    • The present invention provides a method for transmitting data via Caller-ID information. An initiating device initiates phone calls, with their associated Caller-ID information, over a phone line to a callee. The data is identified by the Caller-ID information. The Caller-ID information that identifies the data may be a phone number of the calling party, a date and/or time the phone call was made, and so forth. A receiving device, at the callee location, receives the phone calls, with their associated Caller-ID information and additionally receives personal phone calls, with their associated Caller-ID information. A microprocessor, at the callee location, compares all Caller-ID information received by the receiving device to preinstalled Caller-ID information and if the received Caller-ID information matches any preinstalled Caller-ID information, then the data, identified by the Caller-ID information, is extracted.
    • 本发明提供一种通过呼叫者ID信息发送数据的方法。 发起设备通过电话线将呼叫与其相关联的呼叫者ID信息发起到被叫方。 数据由呼叫者ID信息标识。 识别数据的呼叫者ID信息可以是呼叫方的电话号码,进行电话的日期和/或时间等等。 在受理者位置的接收设备接收与他们相关联的呼叫者ID信息的电话呼叫以及附加接收个人电话呼叫及其相关联的呼叫者ID信息。 在受理者位置的微处理器将接收设备接收的所有呼叫者ID信息与预先安装的呼叫者ID信息进行比较,如果接收到的呼叫者ID信息与预先安装的呼叫者ID信息相匹配,则由呼叫者 - ID信息被提取。