Abstract:
A proxy server and a hierarchical network system and a distributed workload management method. According to one embodiment of this disclosure, the proxy server includes: a rate controller configured to, based on measured request-related information and service quality parameters relative to service levels of requests, periodically determine a dispatch rate for requests of each service level, wherein the sum of the dispatch rate for respective service levels is less than or equal to a predetermined rate; and a request dispatcher configured to dispatch the requests of the corresponding service level in accordance with the dispatch rate determined by the rate controller. One aspect of the disclosure realizes a low overhead, highly scalable, simple and efficient workload management system to achieve QoS assurance and overload protection.
Abstract:
The present invention discloses a liquid crystal display (LCD) panel, which includes an array substrate; a color filter (CF) substrate disposed opposite to the array substrate; and a spacer disposed between the array substrate and the CF substrate. The spacer includes a columnar platform and a recessed platform, and the columnar platform and the recessed platform engage each other. The present invention further discloses a method for manufacturing the LCD panel.
Abstract:
A proxy server and a hierarchical network system and a distributed workload management method. According to one embodiment of this disclosure, the proxy server includes: a rate controller configured to, based on measured request-related information and service quality parameters relative to service levels of requests, periodically determine a dispatch rate for requests of each service level, wherein the sum of the dispatch rate for respective service levels is less than or equal to a predetermined rate; and a request dispatcher configured to dispatch the requests of the corresponding service level in accordance with the dispatch rate determined by the rate controller. One aspect of the disclosure realizes a low overhead, highly scalable, simple and efficient workload management system to achieve QoS assurance and overload protection.
Abstract:
The present invention discloses a panel transferring apparatus. The panel transferring apparatus comprises a panel supporting mechanism for supporting a panel. The panel supporting mechanism comprises a plurality of primary supports spaced apart from each other; and a plurality of secondary supports disposed on the primary supports and extending lateral to the primary supports, wherein the primary supports and the secondary supports cooperate to support the panel. The present invention further discloses a panel supporting mechanism. With the aforesaid arrangement of the panel transferring apparatus and the panel supporting mechanism thereof of the present invention, a contact area between the panel supporting mechanism and the panel is increased by disposing the plurality of secondary supports on the plurality of primary supports. Thereby, flexure of the panel is lessened, the production cost is lowered and the production cycle is shortened.
Abstract:
A method, system and program product for controlling memory overload for a computer system. The invention determines heap utilization of a server; determines a maximum session lifetime a configured percentile of at least one session; determines a traffic rate (comprised of an average traffic rate received from a proxy server and a variance of traffic rate received from a proxy server); and calculates a maximum traffic rate, wherein the maximum traffic rate determines the heap utilization at a maximum heap percentage.
Abstract:
The present invention provides a dye-sensitized solar cell (DSSC), comprising: a substrate having a first electrode formed thereon; a plurality of nanoparticles adsorbed with dye, overlying the first electrode; a solid electrolyte containing metal quantum dots completely covering the nanoparticles and fully filling the space between the nanoparticles; and a second electrode overlying the solid electrolyte. The present invention further provides a method for forming the dye-sensitized solar cell.
Abstract:
The claimed invention relates to compounds of the formula (I): wherein X, Y, Ar1, Ar2, Ar3 and Ar4 are as defined in the specification. The claimed invention also relates to the preparation processes of the said compounds and their uses in the organic electroluminescent device.
Abstract:
A cathode discharge device is provided. The cathode discharge apparatus includes an anode, a cathode and plural cathode chambers. The cathode is located inside the anode, where the cathode has plural flow channels and at least one flow channel hole, and the plural flow channels are connected to one another through the flow channel hole. The plural cathode chambers are located inside the cathode, wherein each of the cathode chambers has a chamber outlet and a chamber inlet connected with at least one of the flow channels.
Abstract:
An on-screen display (OSD) circuit comprises a microprocessor, a serial peripheral interface (SPI) controller, an upload controller and an OSD controller. The SPI controller is connected to the microprocessor for receiving data of an external flash memory. The upload controller is configured to control data access between the SPI controller and the memory. The OSD controller is configured to control a display of an operating screen by the data stored in the memory. The upload controller stores a font table or an icon table and background screen data in the memory while the OSD controller is active.