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    • 3. 发明申请
    • WIRELESS STETHOBROADCASTING INSTRUMENT FOR MEDICAL TRAINING
    • 用于医疗培训的无线硬骨髓切割仪
    • US20160078779A1
    • 2016-03-17
    • US14853211
    • 2015-09-14
    • Nikhil SAHAISubhash Sahai, JR.Arun Somani
    • Nikhil SAHAISubhash Sahai, JR.Arun Somani
    • G09B19/00A61B7/02G09B5/04
    • A61B7/02G09B23/28
    • A method and system provides improved auscultation training for medical students and other healthcare providers. The system includes an instructor stethoscope which generates an acoustic output corresponding to an ausculatory sound from the patient. The acoustic output is wirelessly transmitted to earpieces worn by one or more students such that the students can simultaneously listen with the instructor to the ausculatory sound. The acoustic output may be recorded for future listening and training The instructor stethoscope includes a resonance chamber having a capacitive pickup to receive the ausculatory sound wave from the stethoscope chest piece. The acoustic wave is converted to an analog signal and then to a digital signal, which is broadcast and then re-converted to an analog signal for the listening students.
    • 一种方法和系统为医学生和其他医疗保健提供者提供了改进的听诊培训。 该系统包括教师听诊器,其产生对应于来自患者的听觉声音的声输出。 声学输出被无线传输到由一个或多个学生佩戴的耳机,使得学生可以同时听教导者听取语音。 可以记录声输出以用于将来的听力和训练。讲师听诊器包括具有电容拾音器的共振腔室,以从听诊器胸部片部件接收蜂鸣声波。 声波被转换为模拟信号,然后被转换成数字信号,该数字信号被广播,然后被重新转换为听力学生的模拟信号。
    • 4. 发明授权
    • Real time music recognition and display system
    • 实时音乐识别和显示系统
    • US07323629B2
    • 2008-01-29
    • US10622083
    • 2003-07-16
    • Arun SomaniWu TaoRaed AdhamiLiang ZhaoAnil Sahai
    • Arun SomaniWu TaoRaed AdhamiLiang ZhaoAnil Sahai
    • G10H1/00
    • G10H3/125G10H1/0008G10H2240/165G10H2250/235
    • Systems and methods for performing simple and quick real time single music note recognition algorithm based on fuzzy pattern matching are disclosed. In one aspect, the systems and methods use a 256-point FFT and fuzzy pattern identification and recognition method. The systems and methods can recognize a note as short as 0.125 seconds in a frequency range from 16 Hz to 4000 Hz, with 11.025 KHz sampling rate and 8-bit per sampling signal. The systems and methods may be used as part of a music tutor system that receives a played note, identifies the played note, and compares the played note with a reference note. An indication may be given as to whether the played note matched the reference note.
    • 公开了基于模糊模式匹配的简单快速实时单音乐识别算法的系统和方法。 一方面,系统和方法使用256点FFT和模糊模式识别和识别方法。 系统和方法可以在16 Hz至4000 Hz的频率范围内识别短至0.125秒的音符,采样速率为11.025 KHz,每采样信号为8位。 系统和方法可以被用作接收播放的音符的音乐辅导系统的一部分,识别播放的音符,并将播放的音符与参考音符进行比较。 可以给出播放的音符是否与参考音符相匹配的指示。
    • 5. 发明授权
    • Apparatus and method of displaying music
    • 显示音乐的装置和方法
    • US06156964A
    • 2000-12-05
    • US325088
    • 1999-06-03
    • Anil SahaiArun Somani
    • Anil SahaiArun Somani
    • G09B15/04G09B15/00
    • G09B15/04G10H2220/015
    • A music score display device that eliminates the need for hard copy sheet music and manually turning pages or advancing the music score. The music score display device includes a storage device for storing music score data, a display device for displaying the music score, an input device for inputting music playing data from the musician, a microprocessor, and a computer program. The computer program compares the music score data with the music playing data to determine the playing position of the musician. The computer program then controls the display device so that it displays the portion of the music score corresponding to the playing position of the musician.
    • 一种音乐分数显示装置,消除了对硬拷贝音乐和手动翻页或提高乐谱的需要。 音乐分数显示装置包括用于存储乐谱数据的存储装置,用于显示音乐分数的显示装置,用于从音乐人输入音乐播放数据的输入装置,微处理器和计算机程序。 计算机程序将乐谱数据与音乐播放数据进行比较,以确定音乐家的播放位置。 计算机程序然后控制显示设备,使得它显示与音乐人的播放位置相对应的乐谱的部分。
    • 6. 发明授权
    • Dynamic advance reservation with delayed allocation
    • 动态提前预约与延迟分配
    • US08902920B2
    • 2014-12-02
    • US13533355
    • 2012-06-26
    • Vinod VokkaraneArun Somani
    • Vinod VokkaraneArun Somani
    • H04B7/212H04J14/02
    • H04J14/0267H04J14/0238H04J14/0241H04J14/0257
    • A method of scheduling data transmissions from a source to a destination, includes the steps of: providing a communication system having a number of channels and a number of paths, each of the channels having a plurality of designated time slots; receiving two or more data transmission requests; provisioning the transmission of the data; receiving data corresponding to at least one of the two or more data transmission requests; waiting until an earliest requested start time Ts; allocating at the current time each of the two or more data transmission requests; transmitting the data; and repeating the steps of waiting, allocating, and transmitting until each of the two or more data transmission requests that have been provisioned for a transmission of data is satisfied. A system to perform the method of scheduling data transmissions is also described.
    • 一种调度从源到目的地的数据传输的方法包括以下步骤:提供具有多个信道和多个路径的通信系统,每个信道具有多个指定的时隙; 接收两个或多个数据传输请求; 提供数据的传输; 接收对应于所述两个或多个数据传输请求中的至少一个的数据; 等到最早要求开始时间Ts; 在当前时间分配两个或多个数据传输请求中的每一个; 传输数据; 并重复等待,分配和发送的步骤,直到满足为数据传输提供的两个或多个数据传输请求之一。 还描述了执行调度数据传输方法的系统。
    • 7. 发明授权
    • Superscale processor performance enhancement through reliable dynamic clock frequency tuning
    • 通过可靠的动态时钟频率调谐实现超级处理器性能的提升
    • US07671627B1
    • 2010-03-02
    • US12107415
    • 2008-04-22
    • Arun SomaniMikel Bezdek
    • Arun SomaniMikel Bezdek
    • H03K19/173
    • G06F11/1407G06F9/3861G06F9/3869G06F11/1497G06F11/1608
    • In the case of a pipelined processor, a performance gain is achievable through dynamically generating a main clock signal associated with a synchronous logic circuit and generating at least one backup register clock signal, the backup register clock signal at the same frequency as the main clock signal and phase shifted from the main clock signal to thereby provide additional time for one or more of the logic stages to execute. Error detection or error recovery may be performed using the backup registers. The methodology can further be extended, to design a system with cheaper technology and simple design tools that initially operates at slower speed, and then dynamically overclocks itself to achieve improved performance, while guaranteeing reliable execution.
    • 在流水线处理器的情况下,可以通过动态地产生与同步逻辑电路相关联的主时钟信号并产生至少一个备用寄存器时钟信号来实现性能增益,备用寄存器时钟信号与主时钟信号处于相同的频率 并从主时钟信号相移,从而为一个或多个逻辑级执行提供额外的时间。 可以使用备份寄存器执行错误检测或错误恢复。 该方法可以进一步扩展,设计一种具有更低成本的技术和简单的设计工具的系统,它们最初以较慢的速度运行,然后动态超频自身以实现改进的性能,同时保证可靠的执行。