Dynamically balances computing capacity across a collection of hardware resources aggregated into logical resource pools, continuously monitoring utilization across resource pools, and intelligently allocating available resources among the virtual machines based on pre-defined rules. DRS可在已聚合到逻辑资源池中的一个硬件资源集合内动态地均衡各种计算容量,持续监视各个资源池的利用率,并且根据预先定义的规则智能地在虚拟机之间分配可用的资源。
The simulation result shows that the multiplexer can integrate the functions of storing and multiplexing payload data flexibly with low rate of hardware resource utilization. 试验结果表明该复接器较好地实现了载荷数据的存储和复接功能的集成,并且功能灵活,硬件资源利用率小。
Share of memory by data input and output leads to further improvement of hardware resource utilization. 数据的输入与输出都共用一个存储器,这进一步节约了硬件资源损耗。
These algorithms take hardware implementation ability and resource utilization rate into consideration, thus satisfy requirements of the format conversion SoC. In the end, system level simulation result is given. 算法充分考虑了硬件实现、资源利用率、可实现性等方面,满足视频格式转换芯片的设计要求,最后给出了系统级仿真结果。
It can achieve the hardware circuit which has many advantages for example high speed and high resource utilization through the dynamic partial reconfiguration technology. 通过动态部分可重构技术实现硬件电路具有速度快、资源利用率高等优点。
However, local datacenters have some disadvantages including high cost in hardware investment, difficulties in operation and low resource utilization etc. Under these circumstances, cloud computing emerged as a revolutionary computing paradigm. 然而,本地数据中心存在硬件购置的成本高、维护困难和资源利用率低等缺点。
OA system has become a multi-system instead of a single system, so it is important to deploy system legitimately and improve servers and other hardware resource utilization through cloud. OA系统已经从单一系统发展成为多系统协作,如何通过云计算解决OA协同系统部署,提高服务器等硬件资源利用,是目前比较重要的问题。
RTPR technology not only makes multiple tasks be performed in parallel in the reconfigurable hardware device, but also help to improve resource utilization of the reconfigurable device. 基于RTPR技术,不仅可以在可重构器件上并行执行多个硬件任务,而且有利于提高可重构器件的资源利用率。
Based on the above three-layer model we proposed a load evaluation mathematical model according to hardware indicators and real-time resource utilization. 基于上述三层模型,提出了基于SLA以及资源利用率的负载评价数学模型。
Virtualization is an abstract concept that devices are running in a virtual environment rather than a real one. It separates the physical hardware from the operating system so as to provide higher resource utilization and flexibility. 虚拟化是一个抽象概念,指计算元件在虚拟的基础上而不是真实的基础上运行,它将物理硬件与操作系统分开,从而提供更高的资源利用率和灵活性。
To maximize hardware resource utilization, a map relationship between parallel algorithm and multicore and multithreaded architecture is suggested. 为最大化利用硬件资源,提出合理的并行算法和多核多线程硬件架构的映射关系。