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    • 4. 发明申请
    • HARVEST SWEEPER ATTACHMENT SYSTEM
    • 收割机附件系统
    • US20160212942A1
    • 2016-07-28
    • US15004597
    • 2016-01-22
    • Mark E. GilbertThomas Van Dixon
    • Mark E. GilbertThomas Van Dixon
    • A01D51/00A01D57/12
    • A01D51/002
    • A harvest sweeper attachment system (10) is provided for attaching to a harvester machine (12) having a collection aperture (14), for use in propelling desired objects (11), such as nuts, toward the collection aperture (14). The system (10) preferably has two sweep units (20) mounted on each side of the harvester machine (12) at a forward angle, each including a rotating rake subassembly assembly (34). The rake subassembly (34) is characterized by having three axially spaced freely rotating tine bars (88), each having a depending array of tines (90), mounted between a proximal rake plate (74) and a distal rake plate (76). The proximal and distal rake plates (74, 76) are mounted at about a forty-five degree angle such that the rake subassembly (34) has an offset parallelogram aspect.
    • 提供收割清扫器附接系统(10),用于连接到具有收集孔(14)的收割机(12),用于将所需物体(11)(例如螺母)推向收集孔(14)。 系统(10)优选地具有以收角机(12)的每一侧安装在每个侧面上的两个扫掠单元(20),每个包括旋转的耙式组件组件(34)。 耙子组件(34)的特征在于具有三个轴向间隔开的自由旋转的杆(88),每个具有倾斜的尖齿阵列(90),安装在近端耙板(74)和远端耙板(76)之间。 近侧和远端耙板(74,76)以大约四十五度的角度安装,使得耙组件(34)具有偏移平行四边形方面。
    • 6. 发明授权
    • Method and system for caching managed code for efficient execution on resource-constrained devices
    • 用于缓存托管代码以在资源受限设备上高效执行的方法和系统
    • US07506310B2
    • 2009-03-17
    • US11063706
    • 2005-02-22
    • Mark E. Gilbert
    • Mark E. Gilbert
    • G06F9/44
    • G06F8/4434
    • Described is a system and method that separates a managed code runtime library or program into four parts, comprising a header, resources, metadata and method implementations. The metadata and some or all of the resources are maintained in system memory (RAM) the entire time that the program is running. The method implementations and any non-maintained resources are loaded on demand, and then discarded such as via garbage collection. The amount of memory consumed by a managed code program is thus reduced relative to non-separated environments, but because the metadata and selected resources are in memory, the program execution is highly efficient due to significantly reduced access of data in non-volatile storage. The parts of the assembly that are maintained in RAM can be saved as code library files, providing shared use by programs and efficient loading by eliminating any need to again parse a program to identify the separate parts.
    • 描述了将托管代码运行时库或程序分成四部分的系统和方法,包括头,资源,元数据和方法实现。 元数据和部分或全部资源在程序运行的整个时间内被维护在系统存储器(RAM)中。 方法实现和任何非维护资源都是按需加载的,然后通过垃圾回收进行丢弃。 因此,托管代码程序所消耗的内存量相对于非分开的环境而减少,但是由于元数据和所选资源在存储器中,所以由于非易失性存储器中数据的访问显着减少,程序执行效率非常高。 维护在RAM中的程序集的部件可以保存为代码库文件,提供程序共享使用和高效加载,无需再次解析程序来识别单独的部件。