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    • 22. 发明申请
    • Framework for Integrated Intra- and Inter-Loop Aggregation of Contiguous Memory Accesses for SIMD Vectorization
    • 用于SIMD向量化的连续内存访问的集成内部和环际聚合框架
    • US20080010634A1
    • 2008-01-10
    • US11856284
    • 2007-09-17
    • Alexandre EichenbergerKai-Ting WangPeng Wu
    • Alexandre EichenbergerKai-Ting WangPeng Wu
    • G06F9/45G06F15/00
    • G06F8/4452G06F8/445
    • A method, computer program product, and information handling system for generating loop code to execute on Single-Instruction Multiple-Datapath (SIMD) architectures, where the loop contains multiple non-stride-one memory accesses that operate over a contiguous stream of memory is disclosed. A preferred embodiment identifies groups of isomorphic statements within a loop body where the isomorphic statements operate over a contiguous stream of memory over the iteration of the loop. Those identified statements are then converted in to virtual-length vector operations. Next, the hardware's available vector length is used to determine a number of virtual-length vectors to aggregate into a single vector operation for each iteration of the loop. Finally, the aggregated, vectorized loop code is converted into SIMD operations.
    • 一种用于生成在单指令多数据路径(SIMD)架构上执行的循环码的方法,计算机程序产品和信息处理系统,其中循环包含在连续的存储器流上操作的多个非步进存储器访问 披露 优选实施例识别在循环体内同构语句的组,其中同构语句在循环的迭代上在连续的存储器流上操作。 然后将那些已识别的语句转换为虚拟长度向量操作。 接下来,使用硬件的可用向量长度来确定多个虚拟长度向量以聚合到单个向量操作中,用于循环的每次迭代。 最后,聚合的向量化循环码被转换成SIMD操作。
    • 26. 发明授权
    • Method for manufacturing nano-carbon microparticle
    • US11261094B2
    • 2022-03-01
    • US16614875
    • 2018-04-25
    • Peng WuYanting Cai
    • Peng WuYanting Cai
    • C01B32/90C01B32/15
    • The invention provides a method for manufacturing nano carbon micro particles, including the following steps: step one: digesting the Malvaceae plants to produce solutions containing lignin; step two: extracting lignin condensation from the solution containing lignin, and then removing salt from the lignin condensation to form material containing lignin; step three: carbonizing the material containing lignin to form carbides; step four: crushing the carbides; step five: performing high-frequency heat treatment on the crushed carbides to obtain carbon micro particles; further including step six: crushing again the carbon micro particles so that the carbon micro particles are nano-sized and finely pulverized. The high-purity carbon micro particles obtained by the present invention have excellent properties in aspects of conductivity, wear resistance, heat resistance, corrosion resistance, etc., which can be used as an electromagnetic sealing material, a wear-resistant material, a heating element, a heat-resistant material, corrosion resistant materials, the application is extremely wide.
    • 27. 发明授权
    • Voice-controlled bluetooth headset
    • US10863279B1
    • 2020-12-08
    • US16795409
    • 2020-02-19
    • Peng Wu
    • Peng Wu
    • H04R1/10H04R5/033G10L15/02G10L15/22H04R9/06
    • The disclosure is directed to a voice-controlled Bluetooth headset, which includes a receiver, a storage module, an offline voice recognition module, and a Bluetooth module. The offline voice recognition module is used to activate and recognize a preset voice when a preset activation password is received. The Bluetooth module is electrically connected to other modules, and is used for system control, Bluetooth transmission, and processing of instructions output by the preset voice recognition module and performs corresponding functions. With the above structure, the present disclosure can implement voice control of the Bluetooth headset according to a simple preset password, without manual operation, and is simple and convenient to use. The offline voice recognition module can achieve a preset voice control effect by setting a simple preset password, reducing the time required for the voice recognition device to recognize complex voice information, and the user's human-machine interaction experience is better, which further saves the cost required for voice recognition devices.
    • 30. 发明申请
    • METHOD OF LAYER MANAGEMENT WITH DOUBLE-LAYER OVERLAY ACCURACY CONTROL, CALIBRATION MARK AND MEASUREMENT SYSTEM
    • 双层叠加精度控制的层次管理方法,校准标记和测量系统
    • US20160377991A1
    • 2016-12-29
    • US14865044
    • 2015-09-25
    • Yiming ZhuLijun ChenPeng WuJun Zhu
    • Yiming ZhuLijun ChenPeng WuJun Zhu
    • G03F7/20
    • G03F7/70633
    • The present invention provides a method for solving the need for layer management with double-layer overlay accuracy control, a calibration mark structure which realizes the method and a measurement system with the calibration mark structure. The method modifies the layout of the overlay calibration marks such that overlay information of two layers is contained in one combined calibration mark, has realized the overlay accuracy data collection for the two previous layers in the current layer by one-time measurement, and can treat the overlay accuracies of the two layers as different control accuracies. Thus, the method can complete the automatic feedback optimization of the overlay accuracy compensation, is simple and easy, and can better help the enterprises for production quality assurance and cost control.
    • 本发明提供一种用于解决对具有双层覆盖精度控制的层管理的需要的方法,实现该方法的校准标记结构和具有校准标记结构的测量系统。 该方法修改叠加校准标记的布局,使得两层叠加信息包含在一个组合校准标记中,通过一次测量实现了当前层中两个先前层的叠加精度数据采集,并可以处理 两层的覆盖精度作为不同的控制精度。 因此,该方法可以完成覆盖精度补偿的自动反馈优化,简单易行,可以更好地帮助企业进行生产质量保证和成本控制。