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混合粒子群和差分進(jìn)化的定位算法
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浙江郵電職業(yè)技術(shù)學(xué)院

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TP393

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2018年浙江省教育廳一般科研項目(No.Y201840156)


Hybrid particle swarm optimization and differential evolution localization algorithm
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    摘要:

    針對由測量誤差造成的無(wú)線(xiàn)傳感器網(wǎng)絡(luò )定位精度不高的問(wèn)題,提出一種混合粒子群和差分進(jìn)化的節點(diǎn)定位算法(HPSO-DE)。首先,對粒子群算法的慣性權重進(jìn)行自適應更新,使得每個(gè)個(gè)體隨著(zhù)迭代次數的增加而增大,進(jìn)而提高其全局探索能力,然后改進(jìn)差分進(jìn)化算法的變異策略,從而提高該算法的局部尋優(yōu)能力,之后將個(gè)體先經(jīng)過(guò)改進(jìn)的粒子群算法優(yōu)化,低于平均適應度值的個(gè)體繼續通過(guò)改進(jìn)的差分進(jìn)化算法優(yōu)化,從而得到HPSO-DE算法。HPSO-DE算法繼承了二者的優(yōu)點(diǎn),提高了該算法的最優(yōu)解精度和收斂速度。最后在無(wú)線(xiàn)傳感器網(wǎng)絡(luò )節點(diǎn)定位模型中應用HPSO-DE算法,仿真結果表明,所提HPSO-DE算法在測距誤差為30%時(shí),定位誤差比PSO和DFOA分別少2.1m和1.1m,具有更高的定位精度和更強的抗誤差性能。

    Abstract:

    Aiming at the problem of low positioning accuracy caused by ranging error in Wireless Sensor Networks, a hybrid particle swarm optimization and differential evolution algorithm (HPSO-DE) for node localization is proposed. Firstly, the inertia weight of PSO is updated adaptively to improve its global exploring ability, so that each individual increases with the iterations, thereby improving its global exploration ability, and then improving the mutation strategy of the differential evolution algorithm to improve the locality of the algorithm. After the individual is optimized by the improved particle swarm optimization algorithm, and the individuals below the average fitness value continue to be optimized by the improved differential evolution algorithm to obtain the HPSO-DE algorithm. The HPSO-DE algorithm inherits the advantages of both, and improves the optimal solution precision and convergence speed of the algorithm. Finally, the HPSO-DE algorithm is applied to the wireless sensor network node location model. The simulation results show that the proposed HPSO-DE algorithm has a positioning error of 2.1m and 1.1m less than PSO and DFOA, respectively, when the ranging error is 30%, and has a high positioning accuracy and greater resistance to errors.

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鄭建國,張學(xué)煜.混合粒子群和差分進(jìn)化的定位算法計算機測量與控制[J].,2019,27(10):192-195.

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  • 收稿日期:2019-03-27
  • 最后修改日期:2019-05-06
  • 錄用日期:2019-05-07
  • 在線(xiàn)發(fā)布日期: 2019-10-16
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