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101 results about "SSS*" patented technology

SSS* is a search algorithm, introduced by George Stockman in 1979, that conducts a state space search traversing a game tree in a best-first fashion similar to that of the A* search algorithm. SSS* is based on the notion of solution trees. Informally, a solution tree can be formed from any arbitrary game tree by pruning the number of branches at each MAX node to one. Such a tree represents a complete strategy for MAX, since it specifies exactly one MAX action for every possible sequence of moves made by the opponent. Given a game tree, SSS* searches through the space of partial solution trees, gradually analyzing larger and larger subtrees, eventually producing a single solution tree with the same root and Minimax value as the original game tree. SSS* never examines a node that alpha-beta pruning would prune, and may prune some branches that alpha-beta would not. Stockman speculated that SSS* may therefore be a better general algorithm than alpha-beta. However, Igor Roizen and Judea Pearl have shown that the savings in the number of positions that SSS* evaluates relative to alpha/beta is limited and generally not enough to compensate for the increase in other resources (e.g., the storing and sorting of a list of nodes made necessary by the best-first nature of the algorithm). However, Aske Plaat, Jonathan Schaeffer, Wim Pijls and Arie de Bruin have shown that a sequence of null-window alpha-beta calls is equivalent to SSS* (i.e., it expands the same nodes in the same order) when alpha-beta is used with a transposition table, as is the case in all game-playing programs for chess, checkers, etc. Now the storing and sorting of the OPEN list were no longer necessary. This allowed the implementation of (an algorithm equivalent to) SSS* in tournament quality game-playing programs. Experiments showed that it did indeed perform better than Alpha-Beta in practice, but that it did not beat NegaScout.

TD-LTE (Time Division-Long Term Evolution) frequency offset estimation method for relay system

InactiveCN103701733AMake up for the disadvantage of unknown bandwidthSynchronous sending signal frequencyTransmitter/receiver shaping networksTime-Division Long-Term EvolutionEstimation methods
The invention provides a TD-LTE (Time Division-Long Term Evolution) frequency offset estimation method for a relay system and relates to services or facilities suitable for a wireless communication network. The method comprises the following steps: obtaining positions of synchronizing signals and information about cell ID (Identity) number and cell group ID number inside a cell identification group from receiving signals at a relay end, so as to obtain a synchronizing signal sequence received by a relay; secondly, generating a local PSS (Primary Synchronization Signal) and an SSS (Secondary Synchronization Signal) according to the obtained relay-end cell ID number and cell group ID number relay end; thirdly, carrying out an integer-frequency-offset estimation process by using the PPS received at the relay end and the obtained relay locally-generated PSS; and finally, carrying out integer-frequency-offset adjustment on the receiving signals of the PSS/SSS at the relay end by using the obtained result epsilon I of the integer-frequency-offset estimation, and carrying out fine-frequency-offset estimation process by using a corresponding algorithm. Therefore, the problem of the frequency offset estimation at the relay end can be solved, and the sending frequencies of the signals received at the relay end and the signals at a base station end are synchronous.
Owner:HEBEI UNIV OF TECH +1

Frequency point scanning method, processor, device and system for LTE (long term evolution)

ActiveCN102883411AOvercome the shortcomings of long time-consuming scanning one by oneImprove accuracyAssess restrictionBroadcast channelsResource block
The embodiment of the invention discloses a frequency point scanning method, processor, device and system for LTE (long term evolution). The frequency point scanning method comprises the steps of acquiring power of subcarriers in a frequency band, and calculating the average power of the subcarriers in the frequency band by taking a resource block as a unit; determining a candidate frequency point set in a candidate frequency point region according to a preset step, wherein the candidate frequency point region comprises the resource blocks meeting a preset number requirement, and the average power of the subcarriers in the frequency band of the resource blocks is more than a judgment threshold; and eliminating the frequency points, which do not meet the power detection conditions on principle synchronous signs PSS and secondary synchronous signs SSS, in the candidate frequency point set, and demodulating failed false frequency points by demodulating a physical broadcast channel (PBCH) to obtain frequency point scanning results. The frequency point scanning method overcomes the defect of long time for scanning the frequency points in a broad band one by one in the prior art, and can obtain the frequency point scanning results in the eligible candidate frequency point region and eliminate the influence of other dynamic allocation channels on power, so that the accuracy of the candidate frequency points is enhanced.
Owner:合肥东芯通信股份有限公司

Method and system for synchronizing time sequence among multiple signal shielding devices based on LTE network frame information

The invention discloses a method and a system for synchronizing time sequence among multiple signal shielding devices based on LTE network frame information. The main content of the invention comprises steps of appointing a system frame cycle period of an LTE as a working period of the shielding system and appointing two system frames of the LTE system, wherein one system frame is an identification frame A0 (for identification not for shielding), and the other system frame is an extraction frame B0 (for forwarding shielding). The method disclosed by the invention comprises steps of obtaining an LTE frame head through PSS and SSS, decoding MIB information through an MIC decoding module to obtain synchronization, obtaining a system frame number, obtaining an identification frame A0 position to obtain time synchronization according to the decoding frame head and the frame number which are obtained through the step 1, performing N system cycle periods to obtain identification frame positions A1-An, decoding the frame number through the MIB decoding module, determining whether the numbers of the A1-An are identical to that of the A0, and if yes, determining the time sequence of the signal shielding system is synchronized with the base station.
Owner:ZHEJIANG SUNWAVE COMM TECH CO LTD

Mobility enhancement scheme based on double-connection design for 5G user-centric network

The invention provides a mobility enhancement scheme based on a double-connection design for a 5G user-centric network. According to the mobility enhancement scheme provided by the invention, a macro cell serves as a MeNB to provide a control function, a micro cell serves as a SeNB to provide data service, and the MeNB and the SeNB adopt the double-connection design to provide UE-Centric high-quality service. Firstly, a user reports measured RSRP information of Small Cells that can be received to the macro cell, and the macro cell serves as the MeNB to trigger the SeNBs to monitor the SRS. The SeNBs feed back uplink monitoring conditions to the MeNB for the auxiliary addition/release/modification SeNB decision of the MeNB. According to the mobility enhancement scheme provided by the invention, the downlink measurement is replaced by SRS monitoring, namely the SeNB monitors the uplink SRS of the user to replace the PSS/SSS for uplink channel estimation. According to the mobility enhancement scheme provided by the invention, public system messages and cell level control signals in UCN can be reduced by a reinforced cell discovery mechanism and a measurement mechanism monitored by the SRS, the interference from the SeNB is reduced, and more resources can be used for transmitting data business.
Owner:BEIJING UNIV OF POSTS & TELECOMM

LTE (Long Term Evolution) interference method and LTE interference system based on synchronization signals

The invention discloses an LTE (Long Term Evolution) interference method and an LTE interference system based on synchronization signals, which mainly comprises two schemes. According to the two schemes, 1) a shielding system does not need to be synchronized with a base station, that is, the shielding system searches frequency point information in a shielded area and sends one or more groups of PSS (Primary Synchronization Signal) or SSS (Secondary Synchronization Signal) interference signals by a certain frequency at or near a frequency point position where LTE signals main exist; and 2) synchronization information of the base station needs to be acquired, that is, frequency point information of the base station in the shielded area is searched, PSSs and SSSs sent by the base station are received, the shielding system is enabled to realize synchronization with the base station, and frame timing information and physical layer cell identity of a cell are acquired; the shielding system generates one or more groups of PSS or SSS interference signals according to the acquired physical layer cell identity; and the shielding system sends one or more groups of interference signals in a specific time-frequency domain range. The method and the system provided by the invention are low in transmitting power, and have no influences for the health of a human body. Meanwhile, the method and system do not affect an uplink channel and apply no interference to users in an unshielded area.
Owner:INST OF INFORMATION ENG CAS

Power generation device and method of liquefied air energy storage system

ActiveCN107060921AImprove the efficiency of energy release and power generationGuaranteed uptimeSteam engine plantsThermal energy storagePower grid
The invention provides a power generation device and method of a liquefied air energy storage system. The power generation device and method are used for adjusting the output power according to power grid needed power. The device comprises a liquefied air energy storage and gasification part, an expansion unit and a power generation unit, wherein the liquefied air energy storage and gasification part is used for storing liquefied air, heating and gasifying the liquefied air, and outputting gasified air; the expansion unit comprises a plurality of air expansion machines, and output shafts of the multiple expansion machines are connected with SSS clutches and are used for converting energy of the gasified air into mechanical power; and the power generation unit is used for converting the mechanical power into electric energy and outputting the electric energy. By means of the power generation method and device, all stages of expansion machines and corresponding auxiliary machines all stably run nearby rated working condition points in the power grid load change process, the liquefied air energy release and power generation efficiency is improved, and meanwhile, safe and stable running of the units and equipment is guaranteed.
Owner:NORTH CHINA ELECTRICAL POWER RES INST +3
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