Abstract:
The present invention provides a method and an apparatus for lowering I/O power of a computer system and a computer system. According to an aspect of the present invention, there is provided a method for lowering I/O power of a computer system, comprising: buffering a plurality of ways of data to be sent to a bus; encoding each of the plurality of ways of data buffered from n bits to n+m bits based on an encoding rule, wherein n and m are both an integer larger than or equal to 1, the encoding rule is used to lower code switching frequency; and sending the plurality of ways of data encoded to the bus.
Abstract:
Verfahren zum Überwachen des Zustands einer Flüssigkeitstransportleitung, aufweisend:Veranlassen, das sich eine Überwachungseinrichtung zusammen mit einer Flüssigkeit innerhalb der Flüssigkeitstransportleitung fortbewegt, wobei die Überwachungseinrichtung einen elastischen Gasbehälter aufweist und so beschaffen ist, dass sie das Volumen des elastischen Gasbehälters auf der Grundlage des Umgebungsdrucks des elastischen Gasbehälters anpasst und damit der Auftrieb der Überwachungseinrichtung verändert wird, so dass das Sinken, Schweben oder Steigen der Überwachungseinrichtung in der Flüssigkeit gesteuert wird; undMessen und Aufzeichnen einer oder mehrerer Arten von Umgebungsdaten innerhalb der Flüssigkeitstransportleitung durch die Überwachungseinrichtung, um den Zustand der Flüssigkeitstransportleitung zu ermitteln.
Abstract:
The present invention provides a method and apparatus for lowering l/O power of a computer system. The method comprises: buffering a plurality of ways of data to be sent to a bus; encoding each of the plurality of ways of buffered data from n bits to n+m bits based on an encoding rule, wherein n and m are both integers larger than or equal to 1, and wherein the encoding rule is used to lower code switching frequency; and sending the plurality of ways of encoded data to the bus. The workload of the bus may be monitored before encoding, and each of the plurality of ways may be encoded when the workload of the bus is below threshold. An encoding rule may be selected based on the workload of the monitored bus. After receiving the encoded n+m bit data from the bus, the data may be decoded into n bit data.
Abstract:
The present invention provides a multimode communication terminal which contains at least a first separate channel module and a second separate channel module. The multimode communication terminal can be configured to communicate by using the first channel module and/or the second channel module. The channel modules communicate according to different communication protocols. The multimode communication terminal further comprises: channel switch layer means for switching the first channel module to have parameter characteristics consistent with those of the second channel module, so that the multimode communication terminal enables the MIMO operation mode by using the first channel module and the second channel module at the same time. The present invention further provides a method for enabling a MIMO operation mode in a multimode communication terminal. By using a relatively small number of RF communication modules, the present invention implements a wireless mobile multimode communication terminal which enables various operation modes including the MIMO operation mode. Compared with the existing solutions, the present invention greatly reduces the size required by the terminal.
Abstract:
Embodiments of the present invention relate to a method, apparatus, and system for monitoring the state of a fluid transport pipe. In one embodiment, there is provided a method of monitoring the state of a fluid transport pipe, the method comprising: causing a monitor 210 to move along with a fluid inside the fluid transport pipe, the monitor comprising an elastic gas container 212 (eg rubber bag filled with air) and being configured to adjust the volume of the elastic gas container based on ambient pressure of the elastic gas container; and measuring and recording, by the monitor (eg by memory 552, fig 5c), one or more types of environmental data inside the fluid transport pipe (eg fluid pressure) for determining the state of the fluid transport pipe. In other embodiments, there are further provided an apparatus and system for monitoring a state of a fluid transport pipe.
Abstract:
Ausführungsformen der vorliegenden Erfindung betreffen ein Verfahren, eine Vorrichtung und ein System zum Überwachen des Zustands einer Flüssigkeitstransportleitung. Gemäß einer Ausführungsform wird ein Verfahren zum Überwachen des Zustands einer Flüssigkeitstransportleitung bereitgestellt, das Verfahren aufweisend: Veranlassen, dass sich eine Überwachungseinrichtung zusammen mit einer Flüssigkeit innerhalb der Flüssigkeitstransportleitung fortbewegt, wobei die Überwachungseinrichtung einen elastischen Gasbehälter aufweist und so beschaffen ist, dass sie das Volumen des elastischen Gasbehälters auf der Grundlage des Umgebungsdrucks des elastischen Gasbehälters anpasst; und Messen und Aufzeichnen einer oder mehrerer Arten von Umgebungsdaten innerhalb der Flüssigkeitstransportleitung durch die Überwachungseinrichtung, um den Zustand der Flüssigkeitstransportleitung zu ermitteln. Gemäß weiteren Ausführungsformen werden ferner eine Vorrichtung und ein System zum Überwachen eines Zustands einer Flüssigkeitstransportleitung bereitgestellt.
Abstract:
The present invention provides a multimode communication terminal which contains at least a first separate channel module and a second separate channel module. The multimode communication terminal can be configured to communicate by using the first channel module and/or the second channel module. The channel modules communicate according to different communication protocols. The multimode communication terminal further comprises: channel switch layer means for switching the first channel module to have parameter characteristics consistent with those of the second channel module, so that the multimode communication terminal enables the MIMO operation mode by using the first channel module and the second channel module at the same time. The present invention further provides a method for enabling a MIMO operation mode in a multimode communication terminal. By using a relatively small number of RF communication modules, the present invention implements a wireless mobile multimode communication terminal which enables various operation modes including the MIMO operation mode. Compared with the existing solutions, the present invention greatly reduces the size required by the terminal.
Abstract:
The present invention provides a multimode communication terminal which c ontains at least a first separate channel module and a second separate chann el module. The multimode communication terminal can be configured to communi cate by using the first channel module and/or the second channel module. The channel modules communicate according to different communication protocols. The multimode communication terminal further comprises: channel switch laye r means for switching the first channel module to have parameter characteris tics consistent with those of the second channel module, so that the multimo de communication terminal enables the MIMO operation mode by using the first channel module and the second channel module at the same time. The present invention further provides a method for enabling a MIMO operation mode in a multimode communication terminal. By using a relatively small number of RF c ommunication modules, the present invention implements a wireless mobile mul timode communication terminal which enables various operation modes includin g the MIMO operation mode. Compared with the existing solutions, the present invention greatly reduces the size required by the terminal.