To Ginger --- 2010.1.5

作者分享了在科研过程中遇到的困难与挑战,包括编码错误难以解决、人际关系僵化等问题,并表达了尽管面对巨大压力仍要坚持不懈的决心。

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Dear Ginger:     

     I don't know why my heart's feeling  was so bad today !it has been last whole afternoon!

How much afternoon let me waste!i even don't know what i want to do !

    May be because the error coding that i havn't found them. Or may be because  the relationship between me and him was rigid.Or may be bescuse i haven't had deep sleep this noon.Or may be my baby will coming.

   Everybody in my lab are try thire best effort ,may be including me.You must stady in the lab,Although it against my will . And i feel the presser from  all directions.but most of them from myself.May be i give myself too many pressure,and it has out of my reach,though i am frail.However, i must insist on my position ,because it has six months left.Fighting, my dear,i know you won't give up ,because you have your dream! Most successful people are working hard before they are success,so you must attempt to do your work. may be you are tired,but you will find the fun in your working.

  Today is January,fiveth,2010.The sky of my heart  is gray.

  I hope the sunshine will coming tomorrow!

  Thatl's all.

  Best wishes!

                                                                                                            your sincerely friends

                                                                                                                   Ginger

                                                   

内容概要:论文提出了一种基于空间调制的能量高效分子通信方案(SM-MC),将传输符号分为空间符号和浓度符号。空间符号通过激活单个发射纳米机器人的索引来传输信息,浓度符号则采用传统的浓度移位键控(CSK)调制。相比现有的MIMO分子通信方案,SM-MC避免了链路间干扰,降低了检测复杂度并提高了性能。论文分析了SM-MC及其特例SSK-MC的符号错误率(SER),并通过仿真验证了其性能优于传统的MIMO-MC和SISO-MC方案。此外,论文还探讨了分子通信领域的挑战、优势及相关研究工作,强调了空间维度作为新的信息自由度的重要性,并提出了未来的研究方向和技术挑战。 适合人群:具备一定通信理论基础,特别是对纳米通信和分子通信感兴趣的科研人员、研究生和工程师。 使用场景及目标:①理解分子通信中空间调制的工作原理及其优势;②掌握SM-MC系统的具体实现细节,包括发射、接收、检测算法及性能分析;③对比不同分子通信方案(如MIMO-MC、SISO-MC、SSK-MC)的性能差异;④探索分子通信在纳米网络中的应用前景。 其他说明:论文不仅提供了详细的理论分析和仿真验证,还给出了具体的代码实现,帮助读者更好地理解和复现实验结果。此外,论文还讨论了分子通信领域的标准化进展,以及未来可能的研究方向,如混合调制方案、自适应调制技术和纳米机器协作协议等。
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