Abstract:
Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for receiving a plurality of requests from a plurality of client devices sent to a public internet protocol address; routing the requests to one or more internal Internet protocol addresses, where the one or more internal Internet protocol addresses correspond to one or more compute nodes, and where the one or more compute nodes process the routed requests; determining a particular compute node is offline, where the particular compute node is assigned one or more internal Internet protocol addresses; in response to the determination that the particular node is offline, reassigning the one or more internal Internet protocol addresses corresponding to the particular compute node to one or more different compute nodes, where requests communicated to the reassigned internal Internet protocol addresses are communicated to the one or more different compute nodes for processing.
Abstract:
A technique for processing data in a network is disclosed. In one particular exemplary embodiment, the technique may be realized as a method for processing data in a network having a plurality of network stations. The method comprises receiving a first representation of data at a first of the plurality of network stations, processing the first representation so as to generate a second representation of the data, and transmitting the second representation from the first network station to a second of the plurality of network stations for storage therein, wherein the second representation is stored at an address within the second network station. The method also comprises receiving the address at the first network station, and transmitting the address from the first network station to a third of the plurality of network stations for storage therein.
Abstract:
A technique for processing data in a network is disclosed. In one particular exemplary embodiment, the technique may be realized as a method for processing data in a network having a plurality of network stations. The method comprises receiving a first representation of data at a first of the plurality of network stations, processing the first representation so as to generate a second representation of the data, and transmitting the second representation from the first network station to a second of the plurality of network stations for storage therein, wherein the second representation is stored at an address within the second network station. The method also comprises receiving the address at the first network station, and transmitting the address from the first network station to a third of the plurality of network stations for storage therein.
Abstract:
A method of load-shedding in a system having a plurality of signal sources is disclosed. The method comprises the steps of: (a) for each signal source Si selected from a set of sources {S1, S2, . . . }, each source having state pi,k selected from a set of states {p1,1, p1,2, . . . , p1,N; p2,1, p2,2, . . . , p2,N; . . . }, wherein i is an integer greater than one, N is an integer not less than two and k is an integer from 1 to N: (i) obtaining fractions fi,k, wherein each 0≦fi,k
Abstract translation:公开了一种在具有多个信号源的系统中进行负载切换的方法。 该方法包括以下步骤:(a)对于从一组源(S 1,S 2,S 2)中选择的每个信号源S i, 。 。 。 },每个源具有从一组状态{p1,1,1,...,1,2]中选择的状态p i,i k。 。 。 ,p 1,N N; p2,2,1,p2,2,...。 。 。 ,p <2,N < 。 。 。 },其中i是大于1的整数,N是不小于2的整数,k是从1到N的整数:(i)获得分数f i,k,其中每个0 < = F i i,k 1是如果源S i处于状态p 1的待被丢弃的源的信号的一部分, SUB> i,k 和(ii)基于来自源SII的信号来确定信号源S i i i的相应状态p i,i i; 和(b)对于来自源的信号的丢弃分数f i,k i,在确定的状态p i i,k i中的每个源信号S i, S SUB>。
Abstract:
Methods and systems for controlling the admission of media content into a network are disclosed. A method includes accessing a request for authorization to transfer media content where the request for authorization includes details of a request for media content made to a server of a plurality of servers. In addition, the method includes determining whether at least one of the plurality of servers will be authorized to accommodate the request for media content. A message is generated that is accessible by the server. An admission of media content by the server is coordinated with admissions of media content by the plurality of servers.
Abstract:
A technique for processing data in a network is disclosed. In one particular exemplary embodiment, the technique may be realized as a method for processing data in a network having a plurality of network stations. The method comprises receiving a first representation of data at a first of the plurality of network stations, processing the first representation so as to generate a second representation of the data, and transmitting the second representation from the first network station to a second of the plurality of network stations for storage therein, wherein the second representation is stored at an address within the second network station. The method also comprises receiving the address at the first network station, and transmitting the address from the first network station to a third of the plurality of network stations for storage therein.
Abstract:
Methods and systems for controlling the admission of media content into a network are disclosed. A method includes accessing a request for authorization to transfer media content where the request for authorization includes details of a request for media content made to a server of a plurality of servers. In addition, the method includes determining whether at least one of the plurality of servers will be authorized to accommodate the request for media content. A message is generated that is accessible by the server. An admission of media content by the server is coordinated with admissions of media content by the plurality of servers.
Abstract:
A method of load-shedding in a system having a plurality of signal sources is disclosed. The method comprises the steps of: (a) for each signal source Si selected from a set of sources {S1, S2, . . . }, each source having state pi,k selected from a set of states {p1,1, p1,2, . . . , p1,N; p2,1, p2,2, . . . , p2,N; . . . }, wherein i is an integer greater than one, N is an integer not less than two and k is an integer from 1 to N: (i) obtaining fractions fi,k, wherein each 0≦fi,k
Abstract:
A computer method and system synchronizes one streaming data signal with another data signal. A subject data signal and working data signal are received. The working data signal has predefined coordinates in a coordinate system (e.g., time origin and unit sampling rate in a time coordinate system for audio). The subject data signal and working data signal are transformed into respective common representations. An alignment process aligns the respective transformed representations by matching the transformed representation of the working data signal to that of the subject signal. A re-synchronizer element transposes the predefined coordinates of the working data signal onto the subject signal in the aligned state of the respective transformed representations. As such, the subject data signal is synchronized to the coordinate system of the working data signal.
Abstract:
Methods and systems thereof for monitoring the performance of a streaming media server are described. Server-side measurements are performed with the server operating under a load. Client-side measurements are performed along with the server-side measurements. Data from the server-side measurements and data from the client-side measurements are aligned by time.